TWI736546B - Antistatic agent for adhesives - Google Patents

Antistatic agent for adhesives Download PDF

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TWI736546B
TWI736546B TW105123925A TW105123925A TWI736546B TW I736546 B TWI736546 B TW I736546B TW 105123925 A TW105123925 A TW 105123925A TW 105123925 A TW105123925 A TW 105123925A TW I736546 B TWI736546 B TW I736546B
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bis
cation
meth
hydroxyethyl
acrylate
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TW201704415A (en
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村上賢志
齊藤恭輝
三浦祐嗣
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日商第一工業製藥股份有限公司
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    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J11/00Features of adhesives not provided for in group C09J9/00, e.g. additives
    • C09J11/02Non-macromolecular additives
    • C09J11/06Non-macromolecular additives organic
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K5/00Use of organic ingredients
    • C08K5/36Sulfur-, selenium-, or tellurium-containing compounds
    • C08K5/41Compounds containing sulfur bound to oxygen
    • C08K5/42Sulfonic acids; Derivatives thereof
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09JADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
    • C09J133/00Adhesives based on homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by only one carboxyl radical, or of salts, anhydrides, esters, amides, imides, or nitriles thereof; Adhesives based on derivatives of such polymers
    • C09J133/04Homopolymers or copolymers of esters
    • C09J133/06Homopolymers or copolymers of esters of esters containing only carbon, hydrogen and oxygen, the oxygen atom being present only as part of the carboxyl radical
    • C09J133/08Homopolymers or copolymers of acrylic acid esters
    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09KMATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
    • C09K3/00Materials not provided for elsewhere
    • C09K3/16Anti-static materials
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08KUse of inorganic or non-macromolecular organic substances as compounding ingredients
    • C08K2201/00Specific properties of additives
    • C08K2201/014Additives containing two or more different additives of the same subgroup in C08K

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Adhesives Or Adhesive Processes (AREA)
  • Adhesive Tapes (AREA)

Abstract

本發明的目的在於提供一種即便在高溫高溼條件下耐久性亦優異的黏著劑用抗靜電劑。本發明的黏著劑用抗靜電劑,其特徵在於:含有離子性化合物,其中,離子性化合物的陽離子部位是以下述式(1)~(3)中的任一者所示之陽離子:

Figure 105123925-A0202-11-0001-1
The object of the present invention is to provide an antistatic agent for adhesives that is excellent in durability even under high temperature and high humidity conditions. The antistatic agent for adhesives of the present invention is characterized by containing an ionic compound, wherein the cation site of the ionic compound is a cation represented by any one of the following formulas (1) to (3):
Figure 105123925-A0202-11-0001-1

Figure 105123925-A0202-11-0001-2
Figure 105123925-A0202-11-0001-2

Figure 105123925-A0202-11-0001-3
Figure 105123925-A0202-11-0001-3

上述式(1)~(3)中,R1表示碳數1以上且18以下的烴基,亦可以包含雜原子;R2表示碳數2以上且4以下的烴基,並且複數個R1或R2,各自可以相同亦可以不同。 In the above formulas (1) to (3), R 1 represents a hydrocarbon group with a carbon number of 1 or more and 18 or less, and may also include a heteroatom; R 2 represents a hydrocarbon group with a carbon number of 2 or more and 4 or less, and a plurality of R 1 or R 2. Each can be the same or different.

Description

黏著劑用抗靜電劑 Antistatic agent for adhesives

本發明關於一種黏著劑用抗靜電劑。 The present invention relates to an antistatic agent for adhesives.

一般而言,所謂的靜電,是指:電荷蓄積在物體中而帶電的現象;或,已帶電的電荷本身。靜電,除了藉由兩種介電體摩擦所產生的電荷的累積,亦會藉由與已帶電之物體的接觸等而產生,並且蓄積在物體的表面。前述靜電,亦可能引起塵埃等異物吸入、元件的靜電放電(electrostatic discharge)、測定機器的故障、或火災等。又,現代的電磁裝置由於靜電的放電而受到暫時或永久損傷的傾向亦非常地高。 Generally speaking, the so-called static electricity refers to the phenomenon in which electric charges accumulate in an object and become charged; or, the charged electric charge itself. Static electricity, in addition to the accumulation of electric charges generated by the friction of the two dielectric materials, is also generated by contact with charged objects, etc., and accumulates on the surface of the object. The aforementioned static electricity may also cause the inhalation of foreign objects such as dust, electrostatic discharge of components, failure of measurement equipment, or fire. In addition, modern electromagnetic devices have a very high tendency to be temporarily or permanently damaged due to the discharge of static electricity.

例如,在液晶面板中,用以將偏光板或相位差板黏著在液晶晶胞的玻璃基材等上,大多使用由黏著劑組成物所形成之黏著劑層。該偏光板或相位差板等光學構件,因為通常是藉由塑膠材料所構成,故電氣絕緣性高,所以在剝離黏著劑層時等容易產生靜電。因此,在殘留有因此產生的靜電的狀態下,若將偏光板或相位差板黏貼在液晶晶胞上,會有產生擾亂液晶分子的排列方向的疑慮。 For example, in a liquid crystal panel, an adhesive layer formed of an adhesive composition is often used to adhere a polarizing plate or a retardation plate to a glass substrate of a liquid crystal cell. Optical components such as polarizers and retardation plates are usually made of plastic materials and therefore have high electrical insulation. Therefore, static electricity is likely to be generated when the adhesive layer is peeled off. Therefore, if the polarizing plate or the retardation plate is stuck on the liquid crystal cell in the state where the static electricity generated thereby is left, there is a concern that the alignment direction of the liquid crystal molecules will be disturbed.

又,因為偏光板是高速地進行製造,故剝離偏光板保護薄膜時,本不應產生在現有步驟中之靜電會造成薄膜電晶體(thin film transistor,TFT)、積體電路(integrated circuit,IC)元件的破壞現象,並且有誘發液晶顯示面板的缺陷的可能性。 In addition, because the polarizing plate is manufactured at high speed, when the protective film of the polarizing plate is peeled off, the static electricity that should not have been generated in the existing steps will cause thin film transistors (TFT) and integrated circuits (ICs). ) The destruction phenomenon of the element and the possibility of inducing defects of the liquid crystal display panel.

因此,用以抑制靜電產生,提案有:要求對黏著劑層賦予抗靜電機能,並且作為對黏著劑層賦予抗靜電機能的手段,向形成黏著劑層的黏著劑組成物中,調配離子性化合物(專利文獻1)。 Therefore, in order to suppress the generation of static electricity, there are proposals to provide an antistatic function to the adhesive layer, and as a means to impart an antistatic function to the adhesive layer, an ionic compound should be blended into the adhesive composition forming the adhesive layer (Patent Document 1).

又,即便在半導體加工步驟(例如:晶圓切割步驟、背面研磨步驟)中,由於黏著劑的剝離、摩擦或接觸等會產生靜電,故提案有:作為前述同樣地抑制靜電產生的方法,向形成黏著劑層的黏著劑組成物中,調配離子性化合物(專利文獻2)。 In addition, even in semiconductor processing steps (for example, wafer dicing steps, back grinding steps), static electricity is generated due to peeling, friction, or contact of the adhesive. Therefore, it is proposed that as a method of suppressing the generation of static electricity in the same manner as described above, In the adhesive composition forming the adhesive layer, an ionic compound is blended (Patent Document 2).

然而,調配離子性化合物而成的黏著劑,當保管在高溫高溼條件下時,由於離子性化合物的擴散移動,會有下述問題:表面電阻經時性地上升、或離子性化合物往表面層滲出。 However, the adhesive prepared by blending ionic compounds, when stored under high temperature and high humidity conditions, has the following problems due to the diffusion and movement of the ionic compounds: the surface resistance increases over time, or the ionic compounds move to the surface Layer oozes.

[先前技術文獻] [Prior Technical Literature] (專利文獻) (Patent Document)

專利文獻1:日本特開2011-037927號公報 Patent Document 1: Japanese Patent Application Publication No. 2011-037927

專利文獻2:日本特開2015-003988號公報 Patent Document 2: Japanese Patent Application Publication No. 2015-003988

本發明的目的在於:提供一種黏著劑用抗靜電劑,其即便在高溫高溼條件下耐久性亦優異。 The object of the present invention is to provide an antistatic agent for adhesives which is excellent in durability even under high temperature and high humidity conditions.

本發明人,為解決前述所欲解決的問題而努力研究的結果,發現利用具有特定的陽離子部位之離子性化合物,能夠達成前述問題,進而完成本發明。 As a result of diligent research in order to solve the aforementioned problems, the inventors found that the aforementioned problems can be achieved by using an ionic compound having a specific cationic site, thereby completing the present invention.

本發明,關於以下的[1]~[3]的事項。 The present invention relates to the following items [1] to [3].

[1]一種黏著劑用抗靜電劑,其含有離子性化合物,其中,前述離子性化合物的陽離子部位,是以下述式(1)~(3)中任一者所示之陽離子:

Figure 105123925-A0202-12-0003-4
[1] An antistatic agent for adhesives, which contains an ionic compound, wherein the cation site of the ionic compound is a cation represented by any one of the following formulas (1) to (3):
Figure 105123925-A0202-12-0003-4

Figure 105123925-A0202-12-0003-5
Figure 105123925-A0202-12-0003-5

Figure 105123925-A0202-12-0003-6
(前述式(1)~(3)中,R1表示碳數1以上且18以下的烴基,亦可以包含雜原子;R2表示碳數2以上且4以下的烴基,並且複數個R1或R2,各自可以相同亦可以不同。)
Figure 105123925-A0202-12-0003-6
(In the aforementioned formulas (1) to (3), R 1 represents a hydrocarbon group with 1 or more carbon atoms and 18 or less, and may also contain heteroatoms; R 2 represents a hydrocarbon group with 2 or more carbon atoms and 4 or less, and a plurality of R 1 or R 2 , each may be the same or different.)

[2]如[1]所述之黏著劑用抗靜電劑,其中,前述離子性化合物的陰離子部位,是含有氟原子之化合物。 [2] The antistatic agent for adhesives as described in [1], wherein the anion site of the ionic compound is a compound containing a fluorine atom.

[3]如[1]或[2]所述之黏著劑用抗靜電劑,其中,前述離子性化合物的陰離子部位,是選自由雙(氟化磺醯基)醯亞胺和雙(三氟甲烷磺醯基)醯亞胺所組成之群組中的至少一種。 [3] The antistatic agent for adhesives as described in [1] or [2], wherein the anion site of the ionic compound is selected from the group consisting of bis(fluorinated sulfonyl) imide and bis(trifluoro) At least one of the group consisting of methanesulfonylimine.

根據本發明,能夠提供一種黏著劑用抗靜電劑,其即便在高溫高溼條件下耐久性亦優異。 According to the present invention, it is possible to provide an antistatic agent for adhesives which is excellent in durability even under high temperature and high humidity conditions.

以下,說明本發明的實施形態。 Hereinafter, embodiments of the present invention will be described.

本發明的黏著劑用抗靜電劑所含有的離子性化合物,是由陽離子部位與陰離子部位所構成,並且在室溫下(23℃/50% RH),可以是固體狀和液體狀的任一者。 The ionic compound contained in the antistatic agent for adhesives of the present invention is composed of a cation site and an anion site, and can be either solid or liquid at room temperature (23°C/50% RH) By.

前述離子性化合物的陽離子部位,是以前述式(1)~(3)中任一者所示。 The cation site of the aforementioned ionic compound is represented by any one of the aforementioned formulas (1) to (3).

式(1)~(3)中,R1表示碳數1以上且18以下的烴基,亦可以包含雜原子。R2表示碳數2以上且4以下的烴基,較佳是碳數2以上且3以下的烴基,更佳是碳數2的烴基。複數個R1或R2,各自可以相同亦可以不同。 In formulas (1) to (3), R 1 represents a hydrocarbon group having a carbon number of 1 or more and 18 or less, and may include a hetero atom. R 2 represents a hydrocarbon group having a carbon number of 2 or more and 4 or less, preferably a hydrocarbon group having a carbon number of 2 or more and 3 or less, and more preferably a carbon number of 2 hydrocarbon group. A plurality of R 1 or R 2 may be the same or different.

以式(1)所示之陽離子,並無特別限制,具體而言可列舉:2-羥乙基三甲銨陽離子、2-羥乙基二甲基乙銨陽離子、2-羥乙基二甲基丙銨陽離子、2-羥乙基二甲基丁銨陽離子、2-羥乙基二甲基己銨陽離子、2-羥乙基二甲基辛銨陽離子、2-羥乙基二甲基癸銨陽離子、2- 羥乙基二甲基十二烷銨陽離子、2-羥乙基二甲基苄銨陽離子、2-羥乙基二乙基甲銨陽離子、2-羥乙基三乙銨陽離子、2-羥乙基二乙基丙銨陽離子、2-羥乙基二乙基丁銨陽離子、2-羥乙基二乙基己銨陽離子、2-羥乙基二乙基辛銨陽離子、2-羥乙基二乙基癸銨陽離子、2-羥乙基二乙基十二烷銨陽離子、2-羥乙基二乙基苄銨陽離子、2-羥乙基二丁基甲銨陽離子、2-羥乙基二丁基乙銨陽離子、2-羥乙基二丁基丙銨陽離子、2-羥乙基三丁銨陽離子、2-羥乙基二丁基己銨陽離子、2-羥乙基二丁基辛銨陽離子、2-羥乙基二丁基癸銨陽離子、2-羥乙基二丁基十二烷銨陽離子、2-羥乙基二丁基苄銨陽離子、2-羥丙基三甲銨陽離子、4-羥丁基三甲銨陽離子、2-羥丙基三乙銨陽離子、4-羥丁基三乙銨陽離子、2-羥丙基三丁銨陽離子、4-羥丁基三丁銨陽離子、2-羥丙基二乙基甲銨陽離子、2-羥丙基二乙基丙銨陽離子、2-羥丙基二乙基丁銨陽離子、2-羥丙基二乙基己銨陽離子、2-羥丙基二乙基辛銨陽離子、2-羥丙基二乙基癸銨陽離子、2-羥丙基二乙基十二烷銨陽離子、2-羥丙基二乙基苄銨陽離子等。該等陽離子,可以使用單獨一種,亦可以使用兩種以上。 The cation represented by formula (1) is not particularly limited. Specifically, it can include: 2-hydroxyethyltrimethylammonium cation, 2-hydroxyethyldimethylethylammonium cation, 2-hydroxyethyldimethylammonium cation Propylammonium cation, 2-hydroxyethyldimethylbutylammonium cation, 2-hydroxyethyldimethylhexylammonium cation, 2-hydroxyethyldimethyloctylammonium cation, 2-hydroxyethyldimethyldecylammonium cation Cation, 2- Hydroxyethyldimethyldodecylammonium cation, 2-hydroxyethyldimethylbenzylammonium cation, 2-hydroxyethyldiethylmethylammonium cation, 2-hydroxyethyltriethylammonium cation, 2-hydroxyethyl Diethylpropylammonium cation, 2-hydroxyethyldiethylbutylammonium cation, 2-hydroxyethyldiethylhexylammonium cation, 2-hydroxyethyldiethyloctylammonium cation, 2-hydroxyethyldiethyl Ethyldecylammonium cation, 2-hydroxyethyldiethyldodecylammonium cation, 2-hydroxyethyldiethylbenzylammonium cation, 2-hydroxyethyldibutylmethylammonium cation, 2-hydroxyethyldibutyl cation Ethylammonium cation, 2-hydroxyethyldibutylpropylammonium cation, 2-hydroxyethyltributylammonium cation, 2-hydroxyethyldibutylhexylammonium cation, 2-hydroxyethyldibutyloctylammonium cation, 2-hydroxyethyldibutyldecylammonium cation, 2-hydroxyethyldibutyldodecylammonium cation, 2-hydroxyethyldibutylbenzylammonium cation, 2-hydroxypropyltrimethylammonium cation, 4-hydroxy Butyltrimethylammonium cation, 2-hydroxypropyltriethylammonium cation, 4-hydroxybutyltriethylammonium cation, 2-hydroxypropyltributylammonium cation, 4-hydroxybutyltributylammonium cation, 2-hydroxypropyl 2-hydroxypropyl diethyl propyl ammonium cation, 2-hydroxypropyl diethyl propyl ammonium cation, 2-hydroxypropyl diethyl butyl ammonium cation, 2-hydroxypropyl diethyl hexyl ammonium cation, 2-hydroxypropyl diethyl ammonium cation Ethyloctylammonium cation, 2-hydroxypropyldiethyldecylammonium cation, 2-hydroxypropyldiethyldodecylammonium cation, 2-hydroxypropyldiethylbenzylammonium cation, etc. These cations may be used singly, or two or more of them may be used.

以式(2)所示之陽離子,並無特別限定,具體而言可列舉:雙(2-羥乙基)二甲銨陽離子、雙(2-羥乙基)乙基甲銨陽離子、雙(2-羥乙基)丙基甲銨陽離子、雙(2-羥乙基)丁基甲銨陽離子、雙(2-羥乙基)己基甲銨陽離 子、雙(2-羥乙基)辛基甲銨陽離子、雙(2-羥乙基)癸基甲銨陽離子、雙(2-羥乙基)十二烷基甲銨陽離子、雙(2-羥乙基)十八烯基甲銨陽離子、雙(2-羥乙基)苄基甲銨陽離子、雙(2-羥乙基)二乙銨陽離子、雙(2-羥乙基)乙基丙銨陽離子、雙(2-羥乙基)乙基丁銨陽離子、雙(2-羥乙基)乙基己銨陽離子、雙(2-羥乙基)乙基辛銨陽離子、雙(2-羥乙基)乙基癸銨陽離子、雙(2-羥乙基)乙基十二烷銨陽離子、雙(2-羥乙基)乙基苄銨陽離子、雙(2-羥乙基)丁基丙銨陽離子、雙(2-羥乙基)二丁銨陽離子、雙(2-羥乙基)丁基己銨陽離子、雙(2-羥乙基)丁基辛銨陽離子、雙(2-羥乙基)丁基癸銨陽離子、雙(2-羥乙基)丁基十二烷銨陽離子、雙(2-羥乙基)丁基苄銨陽離子、雙(2-羥丙基)二甲銨陽離子、雙(2-羥丙基)二乙銨陽離子、雙(2-羥丙基)二丁銨陽離子、雙(2-羥丙基)十八烯甲銨陽離子、雙(4-羥丁基)二甲銨陽離子、雙(4-羥丁基)二乙銨陽離子、雙(4-羥丁基)二丁銨陽離子、雙(2-羥丁基)十八烯基甲銨陽離子、聚氧乙烯基十二烷基甲銨陽離子、聚氧乙烯基十二烷基乙銨陽離子、聚氧乙烯基十二烷基丁銨陽離子、聚氧乙烯基十二烷基己銨陽離子、聚氧乙烯基十二烷基辛銨陽離子、聚氧乙烯基十八烯基甲銨陽離子、聚氧乙烯基十八烯基乙銨陽離子、聚氧乙烯基十八烯基丁銨陽離子、聚氧乙烯基十八烯基己銨陽離子、聚氧乙烯基十八烯基辛銨陽離子、聚氧乙烯基十八烷甲銨陽離子、聚氧乙烯基十八烷乙銨陽離子、聚氧乙烯基十八烷丁銨陽離 子、聚氧乙烯基十八烷己銨陽離子、聚氧乙烯基十八烷辛銨陽離子等。該等陽離子,可以使用單獨一種,亦可以使用兩種以上。 The cation represented by formula (2) is not particularly limited. Specifically, examples include bis(2-hydroxyethyl)dimethylammonium cation, bis(2-hydroxyethyl)ethylmethylammonium cation, bis(2-hydroxyethyl)ethylmethylammonium cation, 2-hydroxyethyl)propylmethylammonium cation, bis(2-hydroxyethyl)butylmethylammonium cation, bis(2-hydroxyethyl)hexylmethylammonium cation Bis(2-hydroxyethyl)octylmethylammonium cation, bis(2-hydroxyethyl)decylmethylammonium cation, bis(2-hydroxyethyl)dodecylmethylammonium cation, bis(2-hydroxyethyl)dodecylmethylammonium cation, Hydroxyethyl)octadecenylmethylammonium cation, bis(2-hydroxyethyl)benzylmethylammonium cation, bis(2-hydroxyethyl)diethylammonium cation, bis(2-hydroxyethyl)ethyl propyl Ammonium cation, bis(2-hydroxyethyl)ethylbutylammonium cation, bis(2-hydroxyethyl)ethylhexylammonium cation, bis(2-hydroxyethyl)ethyloctylammonium cation, bis(2-hydroxyethyl) Ethyl) ethyl decyl ammonium cation, bis (2-hydroxyethyl) ethyl dodecyl ammonium cation, bis (2-hydroxyethyl) ethyl benzyl ammonium cation, bis (2-hydroxyethyl) butyl propyl Ammonium cation, bis(2-hydroxyethyl)dibutylammonium cation, bis(2-hydroxyethyl)butylhexylammonium cation, bis(2-hydroxyethyl)butyloctylammonium cation, bis(2-hydroxyethyl) Cation , Bis(2-hydroxypropyl)diethylammonium cation, bis(2-hydroxypropyl)dibutylammonium cation, bis(2-hydroxypropyl)octadecenylmethylammonium cation, bis(4-hydroxybutyl) Dimethylammonium cation, bis(4-hydroxybutyl)diethylammonium cation, bis(4-hydroxybutyl)dibutylammonium cation, bis(2-hydroxybutyl)octadecenylmethylammonium cation, polyoxyethylene Dodecyl methyl ammonium cation, polyoxyethylene dodecyl ethyl ammonium cation, polyoxyethylene dodecyl butyl ammonium cation, polyoxyethylene dodecyl hexyl ammonium cation, polyoxyethylene ten Dialkyloctylammonium cation, polyoxyethylene octadecenyl methyl ammonium cation, polyoxyethylene octadecenyl ethyl ammonium cation, polyoxyethylene octadecenyl butyl ammonium cation, polyoxyethylene octadecene Hexylammonium cation, polyoxyethylene octadecenyl octyl ammonium cation, polyoxyethylene octadecyl methyl ammonium cation, polyoxyethylene octadecyl ethyl ammonium cation, polyoxyethylene octadecyl butyl ammonium cation Ions, polyoxyethylene octadecyl hexyl ammonium cation, polyoxyethylene octadecyl octyl ammonium cation, etc. These cations may be used singly, or two or more of them may be used.

以式(3)所示之陽離子,並無特別限制,具體而言可列舉:三(2-羥乙基)甲銨陽離子、三(2-羥乙基)乙銨陽離子、三(2-羥乙基)丙銨陽離子、三(2-羥乙基)丁銨陽離子、三(2-羥乙基)己銨陽離子、三(2-羥乙基)辛銨陽離子、三(2-羥乙基)癸銨陽離子、三(2-羥乙基)十二烷銨陽離子、三(2-羥乙基)十八烷銨陽離子、三(2-羥乙基)十八烯銨陽離子、三(2-羥乙基)苄銨陽離子、三(2-羥丙基)甲銨陽離子、三(2-羥丙基)乙銨陽離子、三(2-羥丙基)丙銨陽離子、三(2-羥丙基)丁銨陽離子、三(2-羥丙基)己銨陽離子、三(2-羥丙基)辛銨陽離子、三(2-羥丙基)癸銨陽離子、三(2-羥丙基)十二烷銨陽離子、三(2-羥丙基)十八烷銨陽離子、三(2-羥丙基)十八烯銨陽離子、三(2-羥丙基)苄銨陽離子、三(4-羥丁基)甲銨陽離子、三(4-羥丁基)乙銨陽離子、三(4-羥丁基)丙銨陽離子、三(4-羥丁基)丁銨陽離子、三(4-羥丁基)己銨陽離子、三(4-羥丁基)辛銨陽離子、三(4-羥丁基)癸銨陽離子、三(4-羥丁基)十二烷銨陽離子、三(4-羥丁基)十八烷銨陽離子、三(4-羥丁基)十八烯銨陽離子、三(4-羥丁基)苄銨陽離子、N-雙(2-羥乙基)-N-(2-羥丙基)甲銨陽離子、N-雙(2-羥乙基)-N-(2-羥丁基)甲銨陽離子、N-雙(2-羥丙基)-N-(2-羥丁基)甲銨陽離子、 N-(2-羥甲基)-N-(2-羥丙基)-N-(2-羥丁基)甲銨陽離子等。該等陽離子,可以使用單獨一種,亦可以使用兩種以上。 The cation represented by formula (3) is not particularly limited. Specifically, it can include: tris(2-hydroxyethyl)methylammonium cation, tris(2-hydroxyethyl)ethylammonium cation, tris(2-hydroxyethyl) Ethyl)propylammonium cation, tris(2-hydroxyethyl)butylammonium cation, tris(2-hydroxyethyl)hexylammonium cation, tris(2-hydroxyethyl)octylammonium cation, tris(2-hydroxyethyl) )Decylammonium cation, tris(2-hydroxyethyl)dodecylammonium cation, tris(2-hydroxyethyl)octadecylammonium cation, tris(2-hydroxyethyl)octadecenium cation, tris(2 -Hydroxyethyl)benzylammonium cation, tris(2-hydroxypropyl)methylammonium cation, tris(2-hydroxypropyl)ethylammonium cation, tris(2-hydroxypropyl)propylammonium cation, tris(2-hydroxypropyl) Propyl) butylammonium cation, tris(2-hydroxypropyl)hexylammonium cation, tris(2-hydroxypropyl)octylammonium cation, tris(2-hydroxypropyl)decylammonium cation, tris(2-hydroxypropyl) ) Dodecylammonium cation, tris(2-hydroxypropyl)octadecylammonium cation, tris(2-hydroxypropyl)octadecenylammonium cation, tris(2-hydroxypropyl)benzylammonium cation, tris(4 -Hydroxybutyl) methylammonium cation, tris(4-hydroxybutyl)ethylammonium cation, tris(4-hydroxybutyl)propylammonium cation, tris(4-hydroxybutyl)butylammonium cation, tris(4-hydroxybutyl) Butyl)hexylammonium cation, tris(4-hydroxybutyl)octylammonium cation, tris(4-hydroxybutyl)decylammonium cation, tris(4-hydroxybutyl)dodecylammonium cation, tris(4-hydroxybutyl) Butyl)octadecylammonium cation, tris(4-hydroxybutyl)octadecenylammonium cation, tris(4-hydroxybutyl)benzylammonium cation, N-bis(2-hydroxyethyl)-N-(2 -Hydroxypropyl)methylammonium cation, N-bis(2-hydroxyethyl)-N-(2-hydroxybutyl)methylammonium cation, N-bis(2-hydroxypropyl)-N-(2-hydroxy Butyl) methylammonium cation, N-(2-hydroxymethyl)-N-(2-hydroxypropyl)-N-(2-hydroxybutyl)methylammonium cation and the like. These cations may be used singly, or two or more of them may be used.

離子性化合物的陰離子部位,只要是可滿足成為離子性化合物的陰離子,則無特別限定,可使用例如:F-、Cl-、Br-、I-、AlCl4 -、Al2Cl7 -、BF4 -、PF6 -、SCN-、ClO4 -、NO3 -、CH3COO-、CF3COO-、CH3SO3 -、CF3SO3 -、(CF3SO2)2N-、(F2SO2)2N-、(CF3SO2)3C-、AsF6 -、SbF6 -、NbF6 -、TaF6 -、F(HF)n -、(CN)2N-、C4F9SO3 -、(C2F5SO2)2N-、C3F7COO-及(CF3SO2)(CF3CO)N-等。該等陰離子,可以使用單獨一種,亦可以使用兩種以上。 Anionic portion of the ionic compound, as long as it can meet an anionic ionic compound is not particularly limited, and may be used, for example: F -, Cl -, Br -, I -, AlCl 4 -, Al 2 Cl 7 -, BF 4 -, PF 6 -, SCN -, ClO 4 -, NO 3 -, CH 3 COO -, CF 3 COO -, CH 3 SO 3 -, CF 3 SO 3 -, (CF 3 SO 2) 2 N -, (F 2 SO 2) 2 N -, (CF 3 SO 2) 3 C -, AsF 6 -, SbF 6 -, NbF 6 -, TaF 6 -, F (HF) n -, (CN) 2 N -, C 4 F 9 SO 3 -, (C 2 F 5 SO 2) 2 N -, C 3 F 7 COO - , and (CF 3 SO 2) (CF 3 CO) N - and the like. These anions may be used singly, or two or more may be used.

其中,包含氟原子之陰離子成分,從可獲得低熔點的離子性化合物來看較佳,並且更佳是使用:(F2SO2)2N-(雙(氟化磺醯基)醯亞胺)及(CF3SO2)2N-(雙(三氟甲烷磺醯基)醯亞胺)。 Wherein the anionic component containing a fluorine atom, the preferred compound can be obtained from the ionic point of view a low melting point, and more preferably used is: (F 2 SO 2) 2 N - ( bis (sulfo acyl fluoride) (PEI) ) and (CF 3 SO 2) 2 N - ( bis (trifluoromethane sulfonic acyl) (PEI)).

作為可用於本發明的黏著劑用抗靜電劑的離子性化合物的具體例,可由前述陽離子部位與陰離子部位的組合適當選擇來使用,可列舉:2-羥乙基三甲銨=六氟磷酸鹽、2-羥乙基三甲銨=四氟硼酸鹽、2-羥乙基三甲銨=三氟甲磺酸鹽、2-羥乙基三甲銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基三甲銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二甲基乙銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二甲基乙銨=雙(氟化磺醯基)醯亞胺、2- 羥乙基二甲基丁銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二甲基丁銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二甲基辛銨=雙(三氟甲烷磺醯基)醯亞銨、2-羥乙基二甲基辛銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二甲基十二烷銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二甲基十二烷銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二乙基甲銨=六氟磷酸鹽、2-羥乙基二乙基甲銨=四氟硼酸鹽、2-羥乙基二乙基甲銨=三氟甲磺酸鹽、2-羥乙基二乙基甲銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二乙基甲銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二乙基丁銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二乙基丁銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二乙基辛銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二乙基辛銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二丁基甲銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二丁基甲銨=雙(氟化磺醯基)醯亞胺、2-羥乙基三丁銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基三丁銨=雙(氟化磺醯基)醯亞胺、2-羥乙基二丁基辛銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥乙基二丁基辛銨=雙(氟化磺醯基)醯亞胺、2-羥丙基三甲銨=雙(三氟甲烷磺醯基)醯亞胺、2-羥丙基三甲銨=雙(氟化磺醯基)醯亞胺、4-羥丁基三甲銨=雙(三氟甲烷磺醯基)醯亞胺、4-羥丁基三甲銨=雙(氟化磺醯基)醯亞胺、雙(2-羥乙基)二甲銨=六氟磷酸鹽、雙(2-羥乙基)二甲銨=四氟硼酸鹽、雙(2-羥乙基)二甲銨=三氟甲磺酸鹽、雙(2-羥乙基) 二甲銨=雙(三氟甲烷磺醯基)醯亞胺、二甲銨=雙(氟化磺醯基)醯亞胺、雙(2-羥乙基)丁基甲銨=雙(三氟甲烷磺醯基)醯亞胺、雙(2-羥乙基)丁基甲銨=雙(氟化磺醯基)醯亞胺、雙(2-羥乙基)辛基甲銨=雙(三氟甲烷磺醯基)醯亞胺、雙(2-羥乙基)辛基甲銨=雙(氟化磺醯基)醯亞胺、雙(2-羥乙基)十八烯基甲銨=雙(三氟甲烷磺醯基)醯亞胺、雙(2-羥乙基)十八烯基甲銨=雙(氟化磺醯基)醯亞胺、雙(2-羥乙基)丁基辛銨=雙(三氟甲烷磺醯基)醯亞胺、雙(2-羥乙基)丁基辛銨=雙(氟化磺醯基)醯亞胺、雙(2-羥丙基)二甲銨=雙(三氟甲烷磺醯基)醯亞胺、雙(2-羥丙基)二甲銨=雙(氟化磺醯基)醯亞胺、雙(4-羥丁基)二甲銨=雙(三氟甲烷磺醯基)醯亞胺、雙(4-羥丁基)二甲銨=雙(氟化磺醯基)醯亞胺、聚氧乙烯十二烷基甲銨=雙(三氟甲烷磺醯基)醯亞胺、聚氧乙烯十二烷基甲銨=雙(氟化磺醯基)醯亞胺、聚氧乙烯十八烯基甲銨=雙(三氟甲烷磺醯基)醯亞胺、聚氧乙烯十八烯基甲銨=雙(氟化磺醯基)醯亞胺、聚氧乙烯十八烷基甲銨=雙(三氟甲烷磺醯基)醯亞胺、聚氧乙烯十八烷基甲銨=雙(氟化磺醯基)醯亞胺、三(2-羥乙基)甲銨=六氟磷酸鹽、三(2-羥乙基)甲銨=四氟硼酸鹽、三(2-羥乙基)甲銨=三氟甲磺酸鹽、三(2-羥乙基)甲銨=雙(三氟甲烷磺醯基)醯亞胺、三(2-羥乙基)甲銨=雙(氟化磺醯基)醯亞胺、三(2-羥丙基)甲銨=雙(三氟甲烷磺醯基)醯亞胺、三(2-羥丙基)甲銨=雙(氟化磺醯基)醯亞胺、三(4-羥丁基)甲銨= 雙(三氟甲烷磺醯基)醯亞胺、三(4-羥丁基)甲銨=雙(氟化磺醯基)醯亞胺等。該等離子性化合物,可使用單獨一種,亦可使用兩種以上。 Specific examples of ionic compounds that can be used in the antistatic agent for adhesives of the present invention can be appropriately selected and used from the combination of the aforementioned cationic site and anionic site, and examples include: 2-hydroxyethyltrimethylammonium=hexafluorophosphate, 2-hydroxyethyltrimethylammonium=tetrafluoroborate, 2-hydroxyethyltrimethylammonium=trifluoromethanesulfonate, 2-hydroxyethyltrimethylammonium=bis(trifluoromethanesulfonyl)imide, 2 -Hydroxyethyltrimethylammonium = bis(fluorinated sulfonyl) imide, 2-hydroxyethyl dimethyl ethyl ammonium = bis(trifluoromethane sulfonyl) imide, 2-hydroxyethyl dimethyl ammonium Ethyl ammonium = bis(fluorinated sulfonyl) imide, 2- Hydroxyethyl dimethyl butyl ammonium = bis(trifluoromethanesulfonyl) imide, 2-hydroxyethyl dimethyl butyl ammonium = bis(fluorinated sulfonyl) imide, 2-hydroxyethyl Dimethyl octyl ammonium = bis (trifluoromethanesulfonyl) iminium, 2-hydroxyethyl dimethyl octyl ammonium = bis (fluorinated sulfonyl) iminium, 2-hydroxyethyl dimethyl Dodecyl ammonium = bis(trifluoromethanesulfonyl) imide, 2-hydroxyethyl dimethyl dodecyl ammonium = bis(fluorinated sulfonyl) imide, 2-hydroxyethyl diethyl Base methyl ammonium = hexafluorophosphate, 2-hydroxyethyl diethyl methyl ammonium = tetrafluoroborate, 2-hydroxyethyl diethyl methyl ammonium = trifluoromethanesulfonate, 2-hydroxyethyl diethyl Methyl ammonium = bis (trifluoromethanesulfonyl) imide, 2-hydroxyethyl diethyl methyl ammonium = bis (fluorinated sulfonyl) imide, 2-hydroxyethyl diethyl butyl ammonium = Bis(trifluoromethanesulfonyl) amide, 2-hydroxyethyl diethyl butyl ammonium = bis(fluorinated sulfonyl) amide, 2-hydroxyethyl diethyl octyl ammonium = bis( Trifluoromethanesulfonyl) imide, 2-hydroxyethyl diethyl octyl ammonium = bis(fluorinated sulfonyl) imide, 2-hydroxyethyl dibutyl methyl ammonium = bis(trifluoromethanesulfonyl) Base) amide, 2-hydroxyethyl dibutyl methyl ammonium = bis (fluorinated sulfonyl) amide, 2-hydroxyethyl tributyl ammonium = bis (trifluoromethane sulfonyl) amide, 2 -Hydroxyethyl tributyl ammonium = bis (fluorinated sulfonyl) amide, 2-hydroxyethyl dibutyl octyl ammonium = bis (trifluoromethane sulfonyl) amide, 2-hydroxyethyl two Butyl octyl ammonium = bis (sulfonyl fluoride) imide, 2-hydroxypropyl trimethyl ammonium = bis (trifluoromethane sulfonyl) imide, 2-hydroxypropyl trimethyl ammonium = bis (fluorinated Sulfonyl) imide, 4-hydroxybutyl trimethyl ammonium = bis(trifluoromethanesulfonyl) imide, 4-hydroxybutyl trimethyl ammonium = bis(fluorinated sulfonyl) imide, double (2-Hydroxyethyl)dimethylammonium=hexafluorophosphate, bis(2-hydroxyethyl)dimethylammonium=tetrafluoroborate, bis(2-hydroxyethyl)dimethylammonium=trifluoromethanesulfonic acid Salt, bis(2-hydroxyethyl) Dimethylammonium = bis(trifluoromethanesulfonyl)imid, dimethylammonium = bis(fluorosulfonyl)imid, bis(2-hydroxyethyl)butylmethylammonium = bis(trifluoromethanesulfon) Amino) amide, bis(2-hydroxyethyl)butylmethylammonium = bis(sulfonyl fluoride) amide, bis(2-hydroxyethyl)octylmethylammonium = bis(trifluoromethanesulfonyl) Base) amide, bis(2-hydroxyethyl) octyl methyl ammonium = bis (sulfonyl fluoride) amide, bis (2-hydroxyethyl) octadecenyl methyl ammonium = bis (trifluoro Methanesulfonyl) imide, bis(2-hydroxyethyl)octadecenylmethylammonium=bis(fluorinated sulfonyl)imid, bis(2-hydroxyethyl)butyloctylammonium=bis (Trifluoromethanesulfonyl) iminium, bis(2-hydroxyethyl) butyloctyl ammonium = bis(fluorinated sulfonyl) iminium, bis(2-hydroxypropyl) dimethylammonium = bis (Trifluoromethanesulfonyl) iminium, bis (2-hydroxypropyl) dimethyl ammonium = bis (fluorinated sulfonyl) iminium, bis (4-hydroxybutyl) dimethyl ammonium = bis ( Trifluoromethanesulfonyl) imide, bis(4-hydroxybutyl) dimethyl ammonium = bis(fluorinated sulfonyl) imide, polyoxyethylene dodecyl methyl ammonium = bis(trifluoromethane) Sulfonyl) amide, polyoxyethylene lauryl methyl ammonium = bis (fluorinated sulfonyl) amide, polyoxyethylene stearyl methyl ammonium = bis (trifluoromethane sulfonyl) amide Imine, polyoxyethylene stearyl methyl ammonium = bis (fluorinated sulfonyl) amide, polyoxyethylene stearyl methyl ammonium = bis (trifluoromethane sulfonyl) amide, polyoxy Ethylene octadecyl methylammonium = bis (sulfonyl fluoride) imide, tris (2-hydroxyethyl) methyl ammonium = hexafluorophosphate, tris (2-hydroxyethyl) methyl ammonium = tetrafluoroborate Salt, tris(2-hydroxyethyl)methylammonium=trifluoromethanesulfonate, tris(2-hydroxyethyl)methylammonium=bis(trifluoromethanesulfonyl)imide, tris(2-hydroxyethyl) Base) methyl ammonium = bis(fluorinated sulfonyl) amide, tris(2-hydroxypropyl) methyl ammonium = bis(trifluoromethane sulfonyl) amide, tris(2-hydroxypropyl) methyl Ammonium = bis(sulfonyl fluoride) imine, tris(4-hydroxybutyl) methylammonium = Bis(trifluoromethanesulfonyl)imid, tris(4-hydroxybutyl)methylammonium=bis(fluorosulfonyl)imid, etc. The plasmonic compound may be used singly, or two or more kinds may be used.

再者,如前述的離子性化合物,可以使用市售品,亦能夠如下述方式來進行合成。作為離子性化合物等合成方法,只要可獲得設為目的之離子性化合物,並無特別限定,能夠使用如文獻「離子液體-開發的最前線與未來」(CMC股份有限公司出版發行)所述之鹵化物法、氫氧化物法、酸酯法、錯合形成法及中和法等。 In addition, as the aforementioned ionic compound, a commercially available product can be used, or it can be synthesized in the following manner. As a synthesis method such as ionic compounds, as long as the desired ionic compound can be obtained, it is not particularly limited, and can be used as described in the document "Ionic Liquids-The Forefront and Future of Development" (published by CMC Co., Ltd.) Halide method, hydroxide method, acid ester method, complex formation method and neutralization method, etc.

本發明的黏著劑用抗靜電劑,是含有離子性化合物作為有效成分而成者,該離子性化合物具有如前述式(1)~(3)中任一者所述之陽離子部位;並且該黏著劑用抗靜電劑可以單獨使用,亦能夠依據需要混合穩定劑等添加劑或溶媒等來使用。 The antistatic agent for an adhesive of the present invention contains an ionic compound as an effective ingredient, and the ionic compound has a cationic site as described in any one of the aforementioned formulas (1) to (3); and the adhesive The antistatic agent for the agent can be used alone, or it can be used by mixing additives such as stabilizers or solvents as necessary.

本發明的黏著劑用抗靜電劑的添加量,相對於黏著劑聚合物100質量份是0.01質量份以上,較佳是0.05質量份以上,更佳是0.1質量份以上,並且是40質量份以下,較佳是20質量份以下,更佳是10質量份以下。 The addition amount of the antistatic agent for the adhesive of the present invention is 0.01 parts by mass or more relative to 100 parts by mass of the adhesive polymer, preferably 0.05 parts by mass or more, more preferably 0.1 parts by mass or more, and 40 parts by mass or less , Preferably 20 parts by mass or less, more preferably 10 parts by mass or less.

本發明的黏著劑用抗靜電劑,能夠廣泛地適用於該技術領域所使用之黏著劑聚合物中。作為前述黏著劑聚合物,能夠列舉(甲基)丙烯酸系聚合物、橡膠系聚合物、矽氧系聚合物、聚胺酯系聚合物等。該等之中,較佳是能夠使用(甲基)丙烯酸系聚合物。 The antistatic agent for adhesives of the present invention can be widely applied to adhesive polymers used in this technical field. Examples of the aforementioned adhesive polymer include (meth)acrylic polymers, rubber-based polymers, silicone-based polymers, and polyurethane-based polymers. Among these, it is preferable to be able to use a (meth)acrylic polymer.

前述(甲基)丙烯酸系聚合物,例如是含有(甲基)丙烯酸烷酯作為單體單元(成分)之聚合物,該(甲基)丙烯酸烷酯具有碳數1~20的直鏈或支鏈狀的烷基。又,前述(甲基)丙烯酸系聚合物,能夠設為以具有碳數1~20的烷基之(甲基)丙烯酸烷酯單獨、或組合兩種以上而成的構成。 The aforementioned (meth)acrylic polymer is, for example, a polymer containing alkyl (meth)acrylate as a monomer unit (component), and the alkyl (meth)acrylate has a linear or branched chain with 1 to 20 carbon atoms. Chain alkyl. Moreover, the said (meth)acrylic-type polymer can be set as the structure which used the alkyl (meth)acrylate which has a C1-C20 alkyl group individually or in combination of 2 or more types.

作為前述具有碳數1~20的烷基之(甲基)丙烯酸烷酯,可列舉例如:(甲基)丙烯酸甲酯、(甲基)丙烯酸乙酯、(甲基)丙烯酸丙酯、(甲基)丙烯酸異丙酯、(甲基)丙烯酸丁酯、(甲基)丙烯酸異丁酯、(甲基)丙烯酸二級丁酯、(甲基)丙烯酸三級丁酯、(甲基)丙烯酸戊酯、(甲基)丙烯酸異戊酯、(甲基)丙烯酸己酯、(甲基)丙烯酸庚酯、(甲基)丙烯酸辛酯、(甲基)丙烯酸2-乙基己酯、(甲基)丙烯酸異辛酯、(甲基)丙烯酸壬酯、(甲基)丙烯酸異壬酯、(甲基)丙烯酸癸酯、(甲基)丙烯酸異癸酯、(甲基)丙烯酸十一烷酯、(甲基)丙烯酸十二烷酯、(甲基)丙烯酸十三烷酯、(甲基)丙烯酸十四烷酯、(甲基)丙烯酸十五烷酯、(甲基)丙烯酸十六烷酯、(甲基)丙烯酸十七烷酯、(甲基)丙烯酸十八烷酯、(甲基)丙烯酸十九烷酯、(甲基)丙烯酸二十烷酯等(甲基)丙烯酸C1~20烷酯(較佳是(甲基)丙烯酸C2~14烷酯,進一步較佳是(甲基)丙烯酸C2~10烷酯)等。再者,所謂的(甲基)丙烯酸烷酯是意指丙烯酸烷酯及/或甲基丙烯酸烷酯,並且「(甲基)…」全部是同樣的意思。 As the aforementioned alkyl (meth)acrylate having an alkyl group having 1 to 20 carbon atoms, for example, methyl (meth)acrylate, ethyl (meth)acrylate, propyl (meth)acrylate, (meth)acrylate Base) isopropyl acrylate, butyl (meth)acrylate, isobutyl (meth)acrylate, secondary butyl (meth)acrylate, tertiary butyl (meth)acrylate, pentyl (meth)acrylate Ester, isoamyl (meth)acrylate, hexyl (meth)acrylate, heptyl (meth)acrylate, octyl (meth)acrylate, 2-ethylhexyl (meth)acrylate, (methyl) ) Isooctyl acrylate, nonyl (meth)acrylate, isononyl (meth)acrylate, decyl (meth)acrylate, isodecyl (meth)acrylate, undecyl (meth)acrylate, Dodecyl (meth)acrylate, tridecyl (meth)acrylate, tetradecyl (meth)acrylate, pentadecyl (meth)acrylate, hexadecyl (meth)acrylate, Heptadecyl (meth)acrylate, octadecyl (meth)acrylate, nonadecyl (meth)acrylate, eicosyl (meth)acrylate, etc. C1-20 alkyl (meth)acrylate (Preferably C2-14 alkyl (meth)acrylate, more preferably C2-10 alkyl (meth)acrylate) and the like. In addition, the so-called alkyl (meth)acrylate means alkyl acrylate and/or alkyl methacrylate, and "(meth)..." all have the same meaning.

前述具有碳數1~20的烷基之(甲基)丙烯酸烷酯的比例,相對於用以調製(甲基)丙烯酸系聚合物的單體單元(成分)總量100質量份,是50質量份以上,更佳是60質量份以上,進一步較佳是70質量份以上。另一方面,前述比例是99.9質量份以下,較佳是98質量份以下,更佳是96質量份以下。若在前述範圍內,因為能夠在使用於再剝離用途之黏著薄片中獲得較佳的黏著特性,故會成為較佳的態樣。 The ratio of the aforementioned alkyl (meth)acrylate having an alkyl group with 1 to 20 carbon atoms is 50 parts by mass relative to 100 parts by mass of the total monomer units (components) used to prepare the (meth)acrylic polymer Parts or more, more preferably 60 parts by mass or more, and still more preferably 70 parts by mass or more. On the other hand, the aforementioned ratio is 99.9 parts by mass or less, preferably 98 parts by mass or less, and more preferably 96 parts by mass or less. If it is within the aforementioned range, it will become a better aspect because it can obtain better adhesive properties in an adhesive sheet used for re-peeling purposes.

再者,前述(甲基)丙烯酸系聚合物,當將凝集力、耐熱性、交聯性等改質設為目的,依據需要,可包含其他單體單元(成分)(共聚合性單體),該其他單體單元能夠與前述(甲基)丙烯酸烷酯共聚合。從而,(甲基)丙烯酸系聚合物,除了作為主成分的前述(甲基)丙烯酸烷酯,亦可以包含共聚合性單體。作為共聚合性單體,能夠適合使用具有極性基之單體。再者,所謂的主成分,是意指單體成分總量中調配比例最高的單體。 In addition, the aforementioned (meth)acrylic polymer may contain other monomer units (components) (copolymerizable monomers) if necessary for modification of cohesive force, heat resistance, crosslinkability, etc. , This other monomer unit can be copolymerized with the aforementioned alkyl (meth)acrylate. Therefore, the (meth)acrylic polymer may contain a copolymerizable monomer in addition to the aforementioned alkyl (meth)acrylate as the main component. As the copolymerizable monomer, a monomer having a polar group can be suitably used. Furthermore, the so-called main component refers to the monomer with the highest blending ratio among the total monomer components.

作為前述共聚合性單體的具體的例子,可列舉:丙烯酸、甲基丙烯酸、丙烯酸羧乙酯、丙烯酸羧戊酯、亞甲基丁二酸、順丁烯二酸、反丁烯二酸、丁烯酸、異丁烯酸等含有羧基之單體;(甲基)丙烯酸2-羥乙酯、(甲基)丙烯酸3-羥丙酯、(甲基)丙烯酸4-羥丁酯、(甲基)丙烯酸6-羥己酯、(甲基)丙烯酸8-羥辛酯、(甲基)丙烯酸10-羥癸酯、(甲基)丙烯酸12-羥十二烷酯、(4-羥甲基環己基)甲基甲基丙烯酸酯等(甲基)丙烯酸羥烷酯等含有羥基 之單體;順丁烯二酸酐、亞甲基丁二酸酐等含有酸酐基之單體;苯乙烯磺酸、烯丙基磺酸、2-(甲基)丙烯醯胺-2-甲基丙磺酸、(甲基)丙烯醯胺丙磺酸、(甲基)丙烯酸磺酸基丙酯、(甲基)丙烯醯基氧基萘磺酸等含有磺酸基之單體;磷酸2-羥乙基丙烯醯酯等含有磷酸基之單體;(甲基)丙烯醯胺、N,N-二甲基(甲基)丙烯醯胺、N,N-二乙基(甲基)丙烯醯胺、N,N-二丙基(甲基)丙烯醯胺、N,N-二異丙基(甲基)丙烯醯胺、N,N-二(正丁基)(甲基)丙烯醯胺、N,N-二(三級丁基)(甲基)丙烯醯胺等N,N-二烷基(甲基)丙烯醯胺;N-乙基(甲基)丙烯醯胺、N-異丙基(甲基)丙烯醯胺、N-丁基(甲基)丙烯醯胺、N-正丁基(甲基)丙烯醯胺、N-羥甲基(甲基)丙烯醯胺、N-羥乙基(甲基)丙烯醯胺、N-羥甲基丙烷(甲基)丙烯醯胺、N-甲氧基甲基(甲基)丙烯醯胺、N-甲氧基乙基(甲基)丙烯醯胺、N-丁氧基甲基(甲基)丙烯醯胺、N-丙烯醯基嗎啉等(N-取代)醯胺系單體;N-(甲基)丙烯醯基氧基亞甲基丁二醯亞胺、N-(甲基)丙烯醯基-6-氧基六亞甲基丁二醯亞胺、N-(甲基)丙烯醯基-8-氧基六亞甲基丁二醯亞胺等丁二醯亞胺系單體;N-環己基順丁烯二醯亞胺、N-異丙基順丁烯二醯亞胺、N-十二烷基順丁烯二醯亞胺、N-苯基順丁烯二醯亞胺等順丁烯二醯亞胺系單體;N-甲基亞甲基丁二醯亞胺、N-乙基亞甲基丁二醯亞胺、N-丁基亞甲基丁二醯亞胺、N-辛基亞甲基丁二醯亞胺、N-2-乙基己基亞甲基丁二醯亞胺、N-環己基亞甲基丁二醯亞胺、N- 十二烷基亞甲基丁二醯亞胺等亞甲基丁二醯亞胺系單體;乙酸乙烯酯、丙酸乙烯酯等乙烯酯類;N-乙烯基-2-吡咯酮、N-甲基乙烯基吡咯酮、N-乙烯基吡啶、N-乙烯基哌啶酮、N-乙烯基嘧啶、N-乙烯基哌嗪、N-乙烯基吡嗪、N-乙烯基吡咯、N-乙烯基咪唑、N-乙烯基噁唑、N-(甲基)丙烯醯基-2-吡咯酮、N-(甲基)丙烯醯基哌啶、N-(甲基)丙烯醯基吡咯啶、N-乙烯基嗎啉、N-乙烯基-2-哌啶酮、N-乙烯基-3-嗎啉酮、N-乙烯基-2-己內醯胺、N-乙烯基-1,3-噁嗪-2-酮、N-乙烯基-3,5-嗎啉二酮、N-乙烯基吡唑、N-乙烯基異噁唑、N-乙烯基噻唑、N-乙烯基異噻唑、N-乙烯基噠嗪(pyridazine)等含氮雜環系單體;N-乙烯基羧酸醯胺類;N-乙烯基己內醯胺等內醯胺系單體;丙烯腈、甲基丙烯腈等氰基丙烯酸酯單體;(甲基)丙烯酸胺乙酯、(甲基)丙烯酸N,N-二甲基胺乙酯、、(甲基)丙烯酸三級丁基胺乙酯等(甲基)丙烯酸胺烷酯系單體;(甲基)丙烯酸甲氧基乙酯、(甲基)丙烯酸乙氧基乙酯、(甲基)丙烯酸丙氧基乙酯、(甲基)丙烯酸丁氧基乙酯、(甲基)丙烯酸乙氧基丙酯等(甲基)丙烯酸烷氧基烷酯系單體;苯乙烯、α-甲基苯乙烯等苯乙烯系單體;(甲基)丙烯酸環氧丙酯等含有環氧基之丙烯系單體;(甲基)丙烯酸四氫呋喃甲酯、含氟之(甲基)丙烯酸酯、(甲基)丙烯酸矽氧酯等具有雜環、鹵素原子、矽原子等之丙烯酸酯系單體;異戊二烯、丁二烯、異丁烯等烯烴系單體;甲基乙烯基醚、乙基乙烯基醚等乙烯基醚系單體;乙酸乙烯 酯、丙酸乙烯酯等乙烯酯類;乙烯甲苯、苯乙烯等芳香族乙烯化合物;乙烯、丁二烯、異戊二烯、異丁烯等烯烴或二烯類;乙烯基烷基醚等乙烯基醚類;氯化乙烯;乙烯磺酸鈉等含有磺酸基之單體;環己基順丁烯二醯亞胺、異丙基順丁烯二醯亞胺等含有醯亞胺基之單體;2-異氰酸酯基乙基(甲基)丙烯酸酯等含有異氰酸酯基之單體;丙烯醯基嗎啉;(甲基)丙烯酸環戊酯、(甲基)丙烯酸環己酯、(甲基)丙烯酸異莰酯、(甲基)丙烯酸二環戊烯酯等具有脂環式烴基之(甲基)丙烯酸酯;(甲基)丙烯酸苯酯、(甲基)丙烯酸苯氧基乙酯等具有芳香族烴之(甲基)丙烯酸酯;由萜烯化合物衍生物醇所獲得之(甲基)丙烯酸酯等。該等聚合性單體,可以使用單獨一種,亦可以使用兩種以上。 Specific examples of the aforementioned copolymerizable monomers include acrylic acid, methacrylic acid, carboxyethyl acrylate, carboxypentyl acrylate, methylene succinic acid, maleic acid, fumaric acid, Monomers containing carboxyl groups such as crotonic acid and methacrylic acid; 2-hydroxyethyl (meth)acrylate, 3-hydroxypropyl (meth)acrylate, 4-hydroxybutyl (meth)acrylate, (meth) 6-hydroxyhexyl acrylate, 8-hydroxyoctyl (meth)acrylate, 10-hydroxydecyl (meth)acrylate, 12-hydroxydodecyl (meth)acrylate, (4-hydroxymethylcyclohexyl) )Methyl methacrylate, etc. (meth) hydroxyalkyl acrylate, etc. contain a hydroxyl group Monomers; maleic anhydride, methylene succinic anhydride and other monomers containing acid anhydride groups; styrene sulfonic acid, allyl sulfonic acid, 2-(meth)acrylamide-2-methylpropane Sulfonic acid, (meth)acrylamide propanesulfonic acid, (meth)acrylic acid propyl sulfonate, (meth)acryloxynaphthalenesulfonic acid and other monomers containing sulfonic acid groups; phosphoric acid 2-hydroxy Monomers containing phosphoric acid groups such as ethyl acrylate; (meth)acrylamide, N,N-dimethyl (meth)acrylamide, N,N-diethyl (meth)acrylamide , N,N-dipropyl(meth)acrylamide, N,N-diisopropyl(meth)acrylamide, N,N-bis(n-butyl)(meth)acrylamide, N,N-Di(tertiarybutyl)(meth)acrylamide and other N,N-dialkyl(meth)acrylamide; N-ethyl(meth)acrylamide, N-isopropyl (Meth)acrylamide, N-butyl(meth)acrylamide, N-n-butyl(meth)acrylamide, N-methylol(meth)acrylamide, N-hydroxyl Ethyl (meth)acrylamide, N-methylolpropane (meth)acrylamide, N-methoxymethyl (meth)acrylamide, N-methoxyethyl (methyl) (N-substituted) amide-based monomers such as acrylamide, N-butoxymethyl (meth)acrylamide, N-acrylamide morpholine; N-(meth)acryloxy Methyl succinimide, N-(meth)acryloyl-6-oxyhexamethylene succinimide, N-(meth)acryloyl-8-oxyhexamethylene Succinimide monomers such as succinimide; N-cyclohexyl maleimide, N-isopropyl maleimide, N-dodecyl maleimide Maleimines, N-phenylmaleimide and other maleimine monomers; N-methylmethylene succinimide, N-ethylmethylene succinimide Imine, N-butylmethylene succinimide, N-octylmethylene succinimide, N-2-ethylhexylmethylene succinimide, N-cyclohexylimine Methyl succinimide, N- Methylene succinimide monomers such as dodecylmethylene succinimide; vinyl esters such as vinyl acetate and vinyl propionate; N-vinyl-2-pyrrolidone, N- Methylvinylpyrrolidone, N-vinylpyridine, N-vinylpiperidone, N-vinylpyrimidine, N-vinylpiperazine, N-vinylpyrazine, N-vinylpyrrole, N-vinyl N-imidazole, N-vinyloxazole, N-(meth)acryloyl-2-pyrrolidone, N-(meth)acryloylpiperidine, N-(meth)acryloylpyrrolidine, N -Vinylmorpholine, N-vinyl-2-piperidone, N-vinyl-3-morpholinone, N-vinyl-2-caprolactam, N-vinyl-1,3-oxa Azin-2-one, N-vinyl-3,5-morpholinedione, N-vinylpyrazole, N-vinylisoxazole, N-vinylthiazole, N-vinylisothiazole, N- Nitrogen-containing heterocyclic monomers such as pyridazine; N-vinyl carboxylic acid amines; N-vinyl caprolactam and other internal amine monomers; acrylonitrile, methacrylonitrile, etc. Cyanoacrylate monomers; (meth)aminoethyl acrylate, (meth)acrylate N,N-dimethylaminoethyl, (meth)acrylate tertiary butylaminoethyl, etc. (meth) Amine alkyl acrylate monomer; methoxyethyl (meth)acrylate, ethoxyethyl (meth)acrylate, propoxyethyl (meth)acrylate, butoxyethyl (meth)acrylate (Meth)acrylic acid alkoxyalkyl ester monomers such as ester, (meth)acrylate ethoxypropyl ester; styrene, α-methylstyrene and other styrene monomers; (meth)acrylic epoxy Propyl ester and other epoxy-containing propylene monomers; methyl tetrahydrofuran (meth)acrylate, fluorine-containing (meth)acrylate, silicone (meth)acrylate, etc. have heterocycles, halogen atoms, and silicon atoms Acrylate-based monomers such as isoprene, butadiene, isobutylene, etc.; vinyl ether-based monomers such as methyl vinyl ether and ethyl vinyl ether; vinyl acetate Vinyl esters such as esters and vinyl propionate; aromatic vinyl compounds such as vinyl toluene and styrene; olefins or dienes such as ethylene, butadiene, isoprene, and isobutylene; vinyl ethers such as vinyl alkyl ethers Class; Chlorinated vinyl; Sodium vinyl sulfonate and other monomers containing sulfonic acid groups; Monomers containing sulfonic acid groups such as cyclohexyl maleimide and isopropyl maleimide; 2 -Isocyanatoethyl (meth)acrylate and other isocyanate group-containing monomers; acrylomorpholine; cyclopentyl (meth)acrylate, cyclohexyl (meth)acrylate, isocamphor (meth)acrylate (Meth)acrylate esters, dicyclopentenyl (meth)acrylate and other alicyclic hydrocarbon groups; phenyl (meth)acrylate, phenoxyethyl (meth)acrylate and other aromatic hydrocarbons (Meth) acrylate; (meth) acrylate obtained from terpene compound derivative alcohol, etc. These polymerizable monomers may be used singly or in two or more types.

前述(甲基)丙烯酸系聚合物,當與作為主成分的前述(甲基)丙烯酸烷酯同時含有共聚合性單體時,能夠適合使用前述含有羥基之單體或含有羧基之單體。其中,作為前述含有羥基之單體,適合的是(甲基)丙烯酸2-羥乙酯、(甲基)丙烯酸4-羥丁酯,作為前述含有羧基之單體,能夠適合使用丙烯酸。 When the aforementioned (meth)acrylic polymer contains a copolymerizable monomer together with the aforementioned alkyl (meth)acrylate as a main component, the aforementioned hydroxyl group-containing monomer or carboxyl group-containing monomer can be suitably used. Among them, as the aforementioned hydroxyl group-containing monomers, 2-hydroxyethyl (meth)acrylate and 4-hydroxybutyl (meth)acrylate are suitable, and as the aforementioned carboxyl group-containing monomers, acrylic acid can be suitably used.

本發明的黏著劑用抗靜電劑即便在高溫高溼條件下耐久性亦優異的理由雖然並未清楚,但能夠推測如以下。亦即,能夠推測:當前述(甲基)丙烯酸系聚合物具有羥基、羧基等時,本發明的黏著劑用抗靜電劑含有的離子性化合物,因為在陽離子部位具有羥基,所以會提高本發明的黏著劑用抗靜電劑所含有的離子性化合物與前述 (甲基)丙烯酸系聚合物的相溶性,並且能夠表現出耐久性的提升。 Although the reason why the antistatic agent for adhesives of the present invention is excellent in durability even under high temperature and high humidity conditions is not clear, it can be estimated as follows. That is, it can be inferred that when the aforementioned (meth)acrylic polymer has a hydroxyl group, a carboxyl group, etc., the ionic compound contained in the antistatic agent for adhesives of the present invention has a hydroxyl group at the cationic site, thereby improving the present invention. The ionic compound contained in the antistatic agent for adhesives is the same as the aforementioned The compatibility of the (meth)acrylic polymer and the improvement of durability can be exhibited.

用以調整前述(甲基)丙烯酸系聚合物的分子量,能夠在該聚合中使用鏈轉移劑。作為所使用的鏈轉移劑的例子,可列舉:辛硫醇、十二烷硫醇、三級十二烷硫醇、巰乙醇、α-巰甘油等具有巰基之化合物;巰乙酸、巰乙酸甲酯、巰乙酸乙酯、巰乙酸丙酯、巰乙酸丁酯、巰乙酸三級丁酯、巰乙酸2-乙基己酯、巰乙酸辛酯、巰乙酸癸酯、巰乙酸十二烷酯、乙二醇的巰乙酸酯、新戊二醇的巰乙酸酯、季戊四醇的巰乙酸酯等巰乙酸酯類;α-甲基苯乙烯二聚物等。該等鏈轉移劑,可以單獨使用一種,亦可以使用兩種以上。 In order to adjust the molecular weight of the aforementioned (meth)acrylic polymer, a chain transfer agent can be used in the polymerization. Examples of chain transfer agents used include: octyl mercaptan, dodecyl mercaptan, tertiary dodecyl mercaptan, mercaptoethanol, α-mercaptoglycerol, and other compounds having mercapto groups; thioacetic acid, methyl thioacetate Ester, ethyl thioacetate, propyl thioacetate, butyl thioacetate, tertiary butyl thioacetate, 2-ethylhexyl thioacetate, octyl thioacetate, decyl thioacetate, dodecyl thioacetate, Thioacetate esters such as thioacetate of ethylene glycol, thioacetate of neopentyl glycol, and thioacetate of pentaerythritol; α-methylstyrene dimer, etc. One kind of these chain transfer agents may be used alone, or two or more kinds may be used.

當調製前述(甲基)丙烯酸系聚合物時,使用熱聚合起始劑或光聚合起始劑(光起始劑)等聚合起始劑來利用藉由熱或紫外線的硬化反應,便能夠容易地形成(甲基)丙烯酸系聚合物。尤其,從能夠縮短聚合時間的優點等來看,能夠適合使用熱聚合。聚合起始劑能夠單獨或組合兩種以上來使用。 When preparing the aforementioned (meth)acrylic polymer, a polymerization initiator such as a thermal polymerization initiator or a photopolymerization initiator (photoinitiator) is used to utilize the curing reaction by heat or ultraviolet rays, which can easily To form a (meth)acrylic polymer. In particular, thermal polymerization can be suitably used from the viewpoint of the advantage of being able to shorten the polymerization time. A polymerization initiator can be used individually or in combination of 2 or more types.

作為前述熱聚合起始劑,可列舉例如:偶氮系聚合起始劑(例如,2,2’-偶氮雙異丁腈、2,2’-偶氮雙-2-甲基丁腈、2,2’-偶氮(2-甲基丙酸)二甲基酯、4,4’-偶氮雙-4-氰基戊酸、偶氮雙異戊腈、2,2’-偶氮雙(2-甲脒基丙烷)二鹽酸鹽、2,2’-偶氮雙[2-(5-甲基-2-咪唑啉-2-基)丙烷]二鹽酸鹽、2,2’-偶氮雙(2-甲基丙酸脒)二 硫酸鹽;2,2’-偶氮雙(N,N’-二亞甲基異丁脒)二鹽酸鹽等);過氧化物聚合起始劑(例如,過氧化二苯甲醯、三級丁過氧順丁烯二酸(t-butyl peroxide maleate)、過氧化十二醯基等);氧化還原系聚合起始劑等。 Examples of the thermal polymerization initiator include azo polymerization initiators (for example, 2,2'-azobisisobutyronitrile, 2,2'-azobis-2-methylbutyronitrile, 2,2'-Azo (2-methylpropionic acid) dimethyl ester, 4,4'-azobis-4-cyanovaleric acid, azobisisovaleronitrile, 2,2'-azo Bis(2-carboxamidinopropane) dihydrochloride, 2,2'-azobis[2-(5-methyl-2-imidazolin-2-yl)propane] dihydrochloride, 2,2 '-Azobis(2-Methylpropionate amidine) bis Sulfate; 2,2'-azobis(N,N'-dimethylene isobutamidine) dihydrochloride, etc.); peroxide polymerization initiator (for example, dibenzyl peroxide, three Grade butyl peroxy maleate (t-butyl peroxide maleate, dodecyl peroxide, etc.); redox system polymerization initiator, etc.

作為前述熱聚合起始劑的調配量,並無特別限制,例如,相對於調製前述(甲基)丙烯酸系聚合物的單體單元(成分)的總量100質量份,較佳是以0.01~5質量份的範圍內的量來調配,更佳是0.05~3質量份。 The blending amount of the thermal polymerization initiator is not particularly limited. For example, it is preferably 0.01 to 100 parts by mass relative to 100 parts by mass of the total amount of monomer units (components) for preparing the (meth)acrylic polymer. It is formulated in an amount within the range of 5 parts by mass, more preferably 0.05 to 3 parts by mass.

作為前述光聚合起始劑,並無特別限制,能夠使用例如:安息香醚系光聚合起始劑、苯乙酮系光聚合起始劑、α-酮醇系光聚合起始劑、氯化芳香族磺醯系光聚合起始劑、光活性肟系光聚合起始劑、安息香系光聚合起始劑、二苯基乙二酮系光聚合起始劑、二苯基酮系光聚合起始劑、縮酮系光聚合起始劑、硫代氧雜蒽酮(thioxanthone)系光聚合起始劑、醯基氧化膦系光聚合起始劑等。 The aforementioned photopolymerization initiator is not particularly limited. For example, benzoin ether-based photopolymerization initiators, acetophenone-based photopolymerization initiators, α-ketol-based photopolymerization initiators, and chlorinated aromatics can be used. Group sulfonamide-based photopolymerization initiator, photoactive oxime-based photopolymerization initiator, benzoin-based photopolymerization initiator, diphenylethylenedione-based photopolymerization initiator, benzophenone-based photopolymerization initiator Agents, ketal-based photopolymerization initiators, thioxanthone-based photopolymerization initiators, phosphine oxide-based photopolymerization initiators, and the like.

具體而言,作為前述安息香醚系光聚合起始劑,可列舉例如:安息香甲基醚、安息香乙基醚、安息香丙基醚、安息香異丙基醚、安息香異丁基醚、2,2-二甲氧基-1,2-二苯基乙烷-1-酮(商品名:IRGACURE 651,巴斯夫公司製造)、苯甲醚甲基醚等。作為苯乙酮系光聚合起始劑,可列舉例如:1-羥基環己基苯基酮(商品名:IRGACURE 184,巴斯夫公司製造)、4-苯氧基二氯苯乙酮、4-三級丁基-二氯苯乙酮、1-[4-(2-羥基乙 氧基)-苯基]2-羥基-2-甲基-1-丙烷-1-酮(商品名:IRGACURE 2959,巴斯夫公司製造)、2-羥基-2-甲基-1-苯基-丙烷-1-酮(商品名:DAROCUR 1173,巴斯夫公司製造)、甲氧基苯乙酮等。作為α-酮醇系光聚合起始劑,可列舉例如:2-甲基-2羥基苯丙酮、1-[4-(2-羥乙基)-苯基]-2-羥基-2-甲基丙烷-1-酮等。作為氯化芳香族磺醯系光聚合起始劑,可列舉例如氯化2-萘磺醯等。作為光活性肟系光聚合起始劑,可列舉例如1-苯基-1,1-丙二酮-2-(o-乙氧基羰基)-肟等。 Specifically, as the aforementioned benzoin ether-based photopolymerization initiator, for example, benzoin methyl ether, benzoin ethyl ether, benzoin propyl ether, benzoin isopropyl ether, benzoin isobutyl ether, 2,2- Dimethoxy-1,2-diphenylethane-1-one (trade name: IRGACURE 651, manufactured by BASF), anisole methyl ether, and the like. As the acetophenone-based photopolymerization initiator, for example, 1-hydroxycyclohexyl phenyl ketone (trade name: IRGACURE 184, manufactured by BASF), 4-phenoxydichloroacetophenone, 4-tertiary Butyl-dichloroacetophenone, 1-[4-(2-hydroxyethyl (Oxy)-phenyl] 2-hydroxy-2-methyl-1-propane-1-one (trade name: IRGACURE 2959, manufactured by BASF), 2-hydroxy-2-methyl-1-phenyl-propane -1-one (trade name: DAROCUR 1173, manufactured by BASF Corporation), methoxyacetophenone, and the like. Examples of α-ketol-based photopolymerization initiators include 2-methyl-2-hydroxypropiophenone, 1-[4-(2-hydroxyethyl)-phenyl]-2-hydroxy-2-methyl Propane-1-one and so on. As a chlorinated aromatic sulfonyl-based photopolymerization initiator, for example, chlorinated 2-naphthalenesulfonyl and the like can be mentioned. As a photoactive oxime-type photopolymerization initiator, 1-phenyl-1,1-propanedione-2-(o-ethoxycarbonyl)-oxime etc. are mentioned, for example.

又,前述安息香系光聚合起始劑中,包含例如安息香等。二苯基乙二酮系光聚合起始劑中,包含例如二苯基乙二酮等。二苯基酮系光聚合起始劑中,包含二苯基酮、苯甲醯基安息香酸、3,3’-二甲基-4-甲氧基二苯基酮、聚乙烯基二苯基酮、α-羥基環己基苯基酮等。縮酮系光聚合起始劑中,包含例如二苯基乙二酮基甲基縮酮(Benzildimethyl ketal)等。硫代氧雜蒽酮系光聚合起始劑中,包含例如硫代氧雜蒽酮、2-氯硫代氧雜蒽酮、2-甲基硫代氧雜蒽酮、2,4-二甲基硫代氧雜蒽酮、異丙基硫代氧雜蒽酮、2,4-二氯硫代氧雜蒽酮、2,4-二乙基硫代氧雜蒽酮、異丙基硫代氧雜蒽酮、2,4-二異丙基硫代氧雜蒽酮、十二烷基硫代氧雜蒽酮等。 In addition, the aforementioned benzoin-based photopolymerization initiator includes, for example, benzoin and the like. The diphenylethylenedione-based photopolymerization initiator includes, for example, diphenylethylenedione and the like. The benzophenone-based photopolymerization initiator includes benzophenone, benzoic acid, 3,3'-dimethyl-4-methoxydiphenyl ketone, and polyvinyl diphenyl ketone. Ketone, α-hydroxycyclohexyl phenyl ketone, etc. The ketal-based photopolymerization initiator includes, for example, benzildimethyl ketal and the like. The thioxanthone-based photopolymerization initiator includes, for example, thioxanthone, 2-chlorothioxanthone, 2-methylthioxanthone, 2,4-dimethyl Thioxanthone, isopropylthioxanthone, 2,4-dichlorothioxanthone, 2,4-diethylthioxanthone, isopropylthioxanthone Xanthone, 2,4-diisopropylthioxanthone, dodecylthioxanthone, etc.

作為前述醯基氧化膦系光聚合起始劑,可列舉例如:雙(2,6-二甲氧基苯甲醯)苯基氧化膦、雙(2,6-二甲氧基苯甲醯)(2,4,4-三甲基戊基)氧化膦、雙(2,6- 二甲氧基苯甲醯)-正丁基氧化膦、雙(2,6-二甲氧基苯甲醯)-(2-甲基丙烷-1-基)氧化膦、雙(2,6-二甲氧基苯甲醯)-(1-甲基丙烷-1-基)氧化膦、雙(2,6-二甲氧基苯甲醯)三級丁基氧化膦、雙(2,6-二甲氧基苯甲醯)環己基氧化膦、雙(2,6-二甲氧基苯甲醯)辛基氧化膦、雙(2-甲氧基苯甲醯)(2-甲基丙烷-1-基)氧化膦、雙(2-甲氧基苯甲醯)(1-甲基丙烷-1-基)氧化膦、雙(2,6-二乙氧基苯甲醯)(2-甲基丙烷-1-基)氧化膦、雙(2,6-二乙氧基苯甲醯)(1-甲基丙烷-1-基)氧化膦、雙(2,6-二丁氧基苯甲醯)(2-甲基丙烷-1-基)氧化膦、雙(2,4-二甲氧基苯甲醯)(2-甲基丙烷-1-基)氧化膦、雙(2,4,6-三甲基苯甲醯)(2,4-二戊氧基苯基)氧化膦、雙(2,6-二甲氧基苯甲醯)苄基氧化膦、雙(2,6-二甲氧基苯甲醯)-2-苯丙基氧化膦、雙(2,6-二甲氧基苯甲醯)-2-苯乙基氧化膦、雙(2,6-二甲氧基苯甲醯)-2-苯丙基氧化膦、雙(2,6-二甲氧基苯甲醯)-2-苯乙基氧化膦、2,6-二甲氧基苯甲醯苄基丁基氧化膦、2,6-二甲氧基苯甲醯苄基辛基氧化膦、雙(2,4,6-三甲基苯甲醯)-2,5-二異丙苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-2-甲苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-4-甲苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-2,5-二乙基苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-2,3,5,6-四甲基苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-2,4-二正丁氧基苯基氧化膦、2,4,6-三甲基苯甲醯二苯基氧化膦、雙(2,6-二甲氧基苯甲醯)-2,4,4-三甲 基戊基氧化膦、雙(2,4,6-三甲基苯甲醯)異丁基氧化膦、2,6-二甲氧基苯甲醯-2,4,6-三甲基苯甲醯正丁基氧化膦、雙(2,4,6-三甲基苯甲醯)苯基氧化膦、雙(2,4,6-三甲基苯甲醯)-2,4-二丁氧基苯基氧化膦、1,10-雙[雙(2,4,6-三甲基苯甲醯)氧化膦]癸烷、三(2-甲基苯甲醯)氧化膦等。 As the aforementioned phosphine oxide-based photopolymerization initiator, for example, bis(2,6-dimethoxybenzyl)phenyl phosphine oxide, bis(2,6-dimethoxybenzyl) (2,4,4-Trimethylpentyl)phosphine oxide, bis(2,6- Dimethoxybenzyl)-n-butylphosphine oxide, bis(2,6-dimethoxybenzyl)-(2-methylpropane-1-yl)phosphine oxide, bis(2,6- Dimethoxybenzyl)-(1-methylpropan-1-yl)phosphine oxide, bis(2,6-dimethoxybenzyl)tertiary butylphosphine oxide, bis(2,6- Dimethoxybenzyl)cyclohexylphosphine oxide, bis(2,6-dimethoxybenzyl)octylphosphine oxide, bis(2-methoxybenzyl)(2-methylpropane- 1-yl)phosphine oxide, bis(2-methoxybenzyl)(1-methylpropane-1-yl)phosphine oxide, bis(2,6-diethoxybenzyl)(2-methyl Propan-1-yl)phosphine oxide, bis(2,6-diethoxybenzyl)(1-methylpropane-1-yl)phosphine oxide, bis(2,6-dibutoxybenzyl) (2-methylpropane-1-yl)phosphine oxide, bis(2,4-dimethoxybenzyl)(2-methylpropane-1-yl)phosphine oxide, bis(2,4, 6-trimethylbenzyl)(2,4-dipentyloxyphenyl)phosphine oxide, bis(2,6-dimethoxybenzyl)benzylphosphine oxide, bis(2,6-di Methoxybenzyl)-2-phenylpropyl phosphine oxide, bis(2,6-dimethoxybenzyl)-2-phenethylphosphine oxide, bis(2,6-dimethoxybenzene) (Methyl)-2-phenylpropylphosphine oxide, bis(2,6-dimethoxybenzyl)-2-phenylethylphosphine oxide, 2,6-dimethoxybenzylbenzylbutyl Phosphine oxide, 2,6-dimethoxybenzyl benzyl octyl phosphine oxide, bis(2,4,6-trimethylbenzyl)-2,5-dicumyl phosphine oxide, double (2,4,6-trimethylbenzyl)-2-tolyl phosphine oxide, bis(2,4,6-trimethylbenzyl)-4-tolyl phosphine oxide, bis(2,4 ,6-trimethylbenzyl)-2,5-diethylphenyl phosphine oxide, bis(2,4,6-trimethylbenzyl)-2,3,5,6-tetramethyl Phenyl phosphine oxide, bis(2,4,6-trimethylbenzyl)-2,4-di-n-butoxyphenyl phosphine oxide, 2,4,6-trimethylbenzyl diphenyl Phosphine oxide, bis(2,6-dimethoxybenzyl)-2,4,4-trimethyl Pentyl phosphine oxide, bis(2,4,6-trimethylbenzyl)isobutyl phosphine oxide, 2,6-dimethoxybenzyl-2,4,6-trimethylbenzyl N-butyl phosphine oxide, bis(2,4,6-trimethylbenzyl) phenyl phosphine oxide, bis(2,4,6-trimethylbenzyl)-2,4-dibutoxy Phenyl phosphine oxide, 1,10-bis[bis(2,4,6-trimethylbenzyl)phosphine oxide]decane, tris(2-methylbenzyl)phosphine oxide, etc.

前述光聚合起始劑的調配量,並無特別限制,例如,相對於調製前述(甲基)丙烯酸系聚合物的單體成分總量100質量份,較佳是以0.01~5質量份的範圍內的量來進行調配,更佳是0.05~3質量份。此處,若光聚合起始劑的調配量較0.01質量份少,有時聚合反應會變得不充分。若光聚合起始劑的調配量超過5質量份,由於光聚合起始劑會吸收紫外線,有時會使紫外線無法到達至黏著劑層內部。此時,會產生聚合率的降低,並且所生成的聚合物的分子量會變小。 The compounding amount of the aforementioned photopolymerization initiator is not particularly limited. For example, it is preferably in the range of 0.01 to 5 parts by mass relative to 100 parts by mass of the total amount of monomer components for preparing the aforementioned (meth)acrylic polymer. The amount within is more preferably 0.05 to 3 parts by mass. Here, if the compounding amount of the photopolymerization initiator is less than 0.01 part by mass, the polymerization reaction may become insufficient. If the blending amount of the photopolymerization initiator exceeds 5 parts by mass, the photopolymerization initiator absorbs ultraviolet rays, which may prevent the ultraviolet rays from reaching the inside of the adhesive layer. At this time, a decrease in the polymerization rate occurs, and the molecular weight of the produced polymer becomes small.

獲得前述(甲基)丙烯酸系聚合物的方法並無特別限定,作為合成手法能夠適用一般性所用的各種的聚合方法來獲得該聚合物,該一般性所用的各種聚合方法是溶液聚合、乳化聚合、嵌段聚合、懸浮聚合、放射線硬化聚合等。 The method for obtaining the aforementioned (meth)acrylic polymer is not particularly limited. As a synthesis method, various polymerization methods generally used can be applied to obtain the polymer. The various polymerization methods generally used are solution polymerization and emulsion polymerization. , Block polymerization, suspension polymerization, radiation hardening polymerization, etc.

當將前述(甲基)丙烯酸系聚合物使用在黏著薄片,並且將前述黏著薄片作為表面保護薄片來使用時,從黏著薄片的生產性的觀點來看,能夠適合使用溶液聚 合、乳化聚合。又,所獲得之聚合物,可以是隨機共聚物、嵌段共聚物、交互共聚物、接枝共聚物等任一者。 When the aforementioned (meth)acrylic polymer is used in an adhesive sheet and the aforementioned adhesive sheet is used as a surface protection sheet, from the viewpoint of the productivity of the adhesive sheet, solution polymerization can be suitably used. Synthetic and emulsification polymerization. In addition, the obtained polymer may be any of random copolymers, block copolymers, interactive copolymers, graft copolymers, and the like.

前述(甲基)丙烯酸系共聚物中較佳是包含硬化劑。作為前述硬化劑,並無特別限制,具體而言,較佳是包含選自異氰酸酯系硬化劑、環氧基系、乙烯亞胺系、金屬螯合系及胺系硬化劑的一種或兩種以上。 The aforementioned (meth)acrylic copolymer preferably contains a curing agent. There are no particular limitations on the aforementioned curing agent. Specifically, it preferably contains one or more selected from the group consisting of isocyanate-based curing agents, epoxy-based curing agents, ethyleneimine-based curing agents, metal chelate-based curing agents, and amine-based curing agents .

使用前述交聯劑而成之(甲基)丙烯酸系聚合物,因為本發明的黏著劑用抗靜電劑會經由交聯劑,並且藉由共價鍵結來與(甲基)丙烯酸系聚合物進行鍵結,故能夠推測可提升在更高溫高溼條件下的耐久性。 The (meth)acrylic polymer formed by using the aforementioned crosslinking agent, because the antistatic agent for the adhesive of the present invention passes through the crosslinking agent and covalently bonds with the (meth)acrylic polymer Since bonding is performed, it can be estimated that the durability under higher temperature and high humidity conditions can be improved.

作為前述異氰酸酯系硬化劑,具體而言,可列舉較佳是在分子內包含2官能以上的異氰酸酯基之化合物,更佳是在分子內包含3官能以上的異氰酸酯基之化合物。 As the aforementioned isocyanate-based curing agent, specifically, a compound that preferably contains a bifunctional or more isocyanate group in the molecule, and more preferably a compound that contains a trifunctional or more functional isocyanate group in the molecule is exemplified.

作為前述包含異氰酸基酯之化合物,可列舉:甲伸苯基二異氰酸酯、六亞甲基二異氰酸酯、異佛酮二異氰酸酯、苯二甲基二異氰酸酯、氫化苯二甲基二異氰酸酯、二苯基甲烷二異氰酸酯、氫化二苯基甲烷二異氰酸酯、四甲基苯二甲基二異氰酸酯、萘二異氰酸酯、三苯基甲烷三異氰酸酯、聚亞甲基聚苯基異氰酸酯等聚異氰酸酯化合物;及,該等異氰酸酯化合物與三羥甲基丙烷等聚醇的加成(adduct)體或雙縮脲(biuret)體或三聚異氰酸酯(isocyanurate)體;進一步,該等的異氰酸酯化合物與公知的聚醚聚醇或聚酯聚醇、丙烯酸聚醇、聚丁二烯聚 醇、聚異戊二烯聚醇等加成體等。該等包含異氰酸基酯之化合物可以使用單獨一種,亦可以使用兩種以上。 Examples of the aforementioned isocyanate-containing compound include: tolylene diisocyanate, hexamethylene diisocyanate, isophorone diisocyanate, xylylene diisocyanate, hydrogenated xylylene diisocyanate, diisocyanate Polyisocyanate compounds such as phenylmethane diisocyanate, hydrogenated diphenylmethane diisocyanate, tetramethylxylylene diisocyanate, naphthalene diisocyanate, triphenylmethane triisocyanate, polymethylene polyphenyl isocyanate, etc.; and, The adduct or biuret or isocyanurate of these isocyanate compounds and polyols such as trimethylolpropane; further, these isocyanate compounds are combined with known polyether polyols. Alcohol or polyester polyol, acrylic polyol, polybutadiene polyol Adducts such as alcohols, polyisoprene polyols, etc. These isocyanate-containing compounds may be used singly, or two or more kinds may be used.

作為使用來作為前述硬化劑之異氰酸酯系硬化劑,較佳是:甲伸苯基二異氰酸酯的三羥甲基丙烷加成體、甲伸苯基二異氰酸酯的三聚異氰酸酯體、異佛酮二異氰酸酯的三聚異氰酸酯體,特別較佳是甲伸苯基二異氰酸酯的三羥甲基丙烷加成體。該等硬化劑,可以使用單獨一種,亦可以使用兩種以上。 As the isocyanate-based curing agent used as the aforementioned curing agent, preferably: trimethylolpropane adduct of phenylmethylene diisocyanate, trimer isocyanate of phenylmethylene diisocyanate, and isophorone diisocyanate The trimeric isocyanate body is particularly preferably the trimethylolpropane adduct of phenylmethylene diisocyanate. These hardeners may be used singly, or two or more of them may be used.

作為乙烯亞胺系硬化劑的例子,可列舉:N,N’-二苯基甲烷-4,4’-雙(1-伸乙亞胺羰基化物)、N,N’-甲苯-2,4-雙(1-伸乙亞胺羰基化物)、雙間苯二甲醯基-1-(2-甲基伸乙亞胺)、三-1-伸乙亞胺基氧化膦、N,N’-六亞甲基-1,6-雙(1-伸乙亞胺羰基化物)、2,2’-雙羥基甲基丁醇-三[3-(1-伸乙亞胺基)丙酯]、三羥甲基丙烷三-β-伸乙亞胺基丙酯、四羥甲基丙烷三-β-伸乙亞胺基丙酯、三-2,4,6-(1-伸乙亞胺基)-1,3,5-三氮雜苯等。 Examples of ethyleneimine hardeners include: N,N'-diphenylmethane-4,4'-bis(1-ethyleneimine carbonyl), N,N'-toluene-2,4 -Bis (1-ethyleneimine carbonyl compound), bis-m-phthalimide-1-(2-methylethyleneimine), tri-1-ethyleneimine phosphine oxide, N,N' -Hexamethylene-1,6-bis(1-ethyleneimine carbonyl), 2,2'-bishydroxymethylbutanol-tris[3-(1-ethyleneimine)propyl ester] , Trimethylolpropane tri-β-ethyleneimine propyl ester, tetramethylolpropane tri-β-ethyleneimine propyl ester, tri-2,4,6-(1-ethyleneimine Base) -1,3,5-triazabenzene and the like.

作為環氧基系硬化劑的例子,可列舉:雙酚A-表氯醇型的環氧基系樹脂、乙二醇二環氧丙基醚、聚乙二醇二環氧丙基醚、甘油二環氧丙基醚、甘油三環氧丙基醚、1,6-己二醇二環氧丙基醚、三羥甲基丙烷三環氧丙基醚、二環氧丙基苯胺、N,N,N’,N’-四環氧丙基間苯二甲基二胺、1,3-雙(N,N’-二環氧丙基胺甲基)環己烷、N,N,N’,N’-四環氧丙基胺苯基甲烷、三縮水甘油 (triglycidyl)等。該等硬化劑,可以使用單獨一種,亦可以使用兩種以上。 Examples of epoxy-based hardeners include: bisphenol A-epichlorohydrin type epoxy-based resin, ethylene glycol diglycidyl ether, polyethylene glycol diglycidyl ether, and glycerin Diglycidyl ether, glycerol triglycidyl ether, 1,6-hexanediol diglycidyl ether, trimethylolpropane triglycidyl ether, diglycidyl aniline, N, N,N',N'-tetraepoxypropyl metaxylylenediamine, 1,3-bis(N,N'-diepoxypropylaminomethyl)cyclohexane, N,N,N ',N'-Tetraglycidylaminophenylmethane, triglycidol (triglycidyl) and so on. These hardeners may be used singly, or two or more of them may be used.

作為金屬螯合硬化劑的例子,可列舉多價金屬與乙醯丙酮或乙醯乙酸乙酯的配位化合物,該多價金屬是鋁、鐵、銅、鋅、錫、鈦、鎳、銻、鎂、釩、鉻及鋯等。該等硬化劑,可以使用單獨一種,亦可以使用兩種以上。 As an example of a metal chelate hardener, a coordination compound of a polyvalent metal and acetone or ethyl acetone can be cited. The polyvalent metal is aluminum, iron, copper, zinc, tin, titanium, nickel, antimony, Magnesium, vanadium, chromium and zirconium, etc. These hardeners may be used singly, or two or more of them may be used.

作為胺系硬化劑的例子,可列舉:六亞甲基二胺、三乙基二胺、聚乙烯亞胺、六亞甲基四胺、二乙烯基三胺、三乙基四胺、異佛酮二胺、胺基樹脂及亞甲基樹脂等。該等硬化劑,可以使用單獨一種,亦可以使用兩種以上。 Examples of amine hardeners include: hexamethylene diamine, triethyl diamine, polyethyleneimine, hexamethylene tetramine, divinyl triamine, triethyl tetramine, isophor Ketone diamine, amino resin and methylene resin, etc. These hardeners may be used singly, or two or more of them may be used.

該等硬化劑,相對於(甲基)丙烯酸系聚合物100質量份,較佳是使用0.01~10質量份,更佳是0.03~5質量份,特佳是0.05~3質量份。 With respect to 100 parts by mass of the (meth)acrylic polymer, these hardeners are preferably used in an amount of 0.01 to 10 parts by mass, more preferably 0.03 to 5 parts by mass, and particularly preferably 0.05 to 3 parts by mass.

前述黏著劑聚合物中,除了前述成分之外,在不損害本發明的效果的範圍內,亦可以含有選自聚合抑制劑、黏著賦予劑、塑化劑、交聯促進劑、抗氧化劑、光穩定劑、金屬腐蝕抑制劑、前述黏著劑聚合物以外的(甲基)丙烯酸系聚合物及再處理(rework)劑中的一種或兩種以上。 In addition to the aforementioned components, the aforementioned adhesive polymer may also contain selected from the group consisting of polymerization inhibitors, adhesion-imparting agents, plasticizers, crosslinking accelerators, antioxidants, light One or two or more of stabilizers, metal corrosion inhibitors, (meth)acrylic polymers other than the aforementioned adhesive polymers, and rework agents.

前述黏著劑聚合物,為了調製其塗佈性,較佳是含有有機溶媒。作為有機溶媒並無特別限制,具體而言,可列舉苯、甲苯、二甲苯等芳香族烴類;正戊烷、正己烷、正庚烷、正辛烷等脂肪族烴類;環戊烷、環己烷、 環庚烷、環辛烷等脂環式烴類;二乙基醚、二異丙基醚、1,2-二甲氧基乙烷、二丁基醚、四氫呋喃、二氧雜環(dioxane)、苯甲醚、苯基乙基醚、二苯基醚等醚類;三氯甲烷、四氯甲烷、1,2-二氯乙烷、氯苯等鹵化烴類;乙酸乙酯、乙酸丙酯、乙酸丁酯、丙酸甲酯等酯類;丙酮、甲基乙基酮、二乙基酮、甲基異丁基酮、環己酮等酮類;N,N-二甲基甲醯胺、N,N-二甲基乙醯胺、N-甲基吡咯啶酮等醯胺類;乙腈、芐腈等腈類;二甲基亞碸、環丁碸等亞碸類等。該等的聚合溶媒可以使用單獨一種,亦可以使用兩種以上。 The aforementioned adhesive polymer preferably contains an organic solvent in order to adjust its coatability. The organic solvent is not particularly limited. Specifically, aromatic hydrocarbons such as benzene, toluene, and xylene; aliphatic hydrocarbons such as n-pentane, n-hexane, n-heptane, and n-octane; cyclopentane, Cyclohexane, Alicyclic hydrocarbons such as cycloheptane and cyclooctane; diethyl ether, diisopropyl ether, 1,2-dimethoxyethane, dibutyl ether, tetrahydrofuran, dioxane , Anisole, phenyl ethyl ether, diphenyl ether and other ethers; trichloromethane, tetrachloromethane, 1,2-dichloroethane, chlorobenzene and other halogenated hydrocarbons; ethyl acetate, propyl acetate , Butyl acetate, methyl propionate and other esters; acetone, methyl ethyl ketone, diethyl ketone, methyl isobutyl ketone, cyclohexanone and other ketones; N,N-dimethylformamide , N,N-dimethylacetamide, N-methylpyrrolidone and other amides; acetonitrile, benzonitrile and other nitriles; dimethyl sulfinium, cyclobutane and other sulfinates. These polymerization solvents may be used singly, or two or more kinds may be used.

前述黏著劑聚合物中,有機溶媒的含有量通常是50~90質量%,較佳是60~85質量%。 In the aforementioned adhesive polymer, the content of the organic solvent is usually 50 to 90% by mass, preferably 60 to 85% by mass.

使用本發明的黏著劑用抗靜電劑之黏著劑組成物,能夠藉由先前公知的方法,利用混合黏著劑用抗靜電劑、黏著劑聚合物、及依據需要的交聯劑、其他成分,來進行調製。可列舉例如以下方法:在包含共聚物之聚合物溶液中,調配離子性化合物及依據需要的交聯劑、其他的成分;該共聚物,是合成黏著劑聚合物也就是(甲基)丙烯酸系聚合物時所獲得。 The adhesive composition using the antistatic agent for adhesives of the present invention can be obtained by mixing the antistatic agent for adhesives, the adhesive polymer, and the crosslinking agent and other components as required by a previously known method. Make modulation. For example, the following method can be mentioned: in a polymer solution containing a copolymer, an ionic compound, a crosslinking agent and other components as required are blended; the copolymer is a synthetic adhesive polymer that is (meth)acrylic Obtained when polymer.

[實施例] [Example]

繼而,基於實施例來具體說明本發明,但是本發明並未限定於該等實施例。以下的實施例等記載中,若無特別提及,「份」表示「質量份」。 Next, the present invention will be specifically described based on examples, but the present invention is not limited to these examples. In the description of the following examples and the like, if there is no special mention, "parts" means "parts by mass".

[測定和評價方法] [Measurement and Evaluation Method]

在下述的實施例及比較例中,各種性狀的測定方法和評價方法如以下所述。 In the following Examples and Comparative Examples, the measurement methods and evaluation methods of various properties are as follows.

〈分子量:重量平均分子量(Mw)〉 <Molecular weight: weight average molecular weight (Mw)>

(甲基)丙烯酸系共聚物的分子量,是使用TOSOH股份有限公司製造的GPC裝置HLC-8220GPC來實行測定,並且利用聚苯乙烯換算值而求得。 The molecular weight of the (meth)acrylic copolymer was measured using a GPC device HLC-8220GPC manufactured by TOSOH Co., Ltd., and was calculated using a polystyrene conversion value.

測定條件如以下所述。樣品濃度:0.2wt%(THF溶液);樣品注入量:10μl;溶析液:THF;流速:0.6mL/分鐘;測定溫度:40℃;管柱:樣品管柱,TSK guard column Super HZ-H 1支+TSK gel Super HZM-H 2支;參考管柱:TSK gel Super H-RC 1支;檢測器:折射率偵檢器。 The measurement conditions are as follows. Sample concentration: 0.2wt% (THF solution); sample injection volume: 10μl; eluent: THF; flow rate: 0.6 mL/min; measurement temperature: 40°C; column: sample column, TSK guard column Super HZ-H 1 + TSK gel Super HZM-H 2; Reference column: TSK gel Super H-RC 1; Detector: refractive index detector.

〈耐久性評價〉 <Durability evaluation>

有關實施例及比較例所獲得之評價用黏著薄片,在20℃/65% RH環境下測定表面電阻值。表面電阻值,是使用愛德萬測試股份有限公司製造的R8340A,並且在施加電壓500V中進行測定。將其設為初期表面電阻值(Ω/square)。 For the evaluation adhesive sheets obtained in the Examples and Comparative Examples, the surface resistance values were measured in an environment of 20°C/65% RH. The surface resistance value was measured at an applied voltage of 500V using R8340A manufactured by Advantest Co., Ltd. Let this be the initial surface resistance value (Ω/square).

又,將該評價用黏著薄片放置在60℃/90% RH環境下500小時後,同樣地測定表面電阻值。將其設為耐久試驗後的表面電阻值。 In addition, after leaving this adhesive sheet for evaluation in a 60° C./90% RH environment for 500 hours, the surface resistance value was measured in the same manner. Let this be the surface resistance value after the endurance test.

〈(甲基)丙烯酸系共聚物的調製〉 <Preparation of (meth)acrylic copolymer>

((甲基)丙烯酸系共聚物A) ((Meth) acrylic copolymer A)

在具備攪拌機、溫度計、回流冷卻器、滴下裝置及氮氣導入管之反應裝置中,填入氮氣氣體後,投入70份乙酸乙酯、15份丙酮、62.5份丙烯酸丁酯、19.0份丙烯酸苯氧基乙酯、16.0份丙烯酸甲酯、1.5份丙烯酸、1.0份丙烯酸2-羥乙酯及0.1份偶氮系聚合起始劑2,2’-偶氮雙異丁腈(和光純藥工業股份有限公司,商品名V-60)。一邊攪拌,一邊在氮氣氣體氣流中以溶劑的回流溫度實行反應8小時。反應結束後,添加315份甲苯然後冷卻至室溫,調製成固形分20重量%的聚合物溶液。所獲得之(甲基)丙烯酸系共聚物A的黏度是7000mPa‧s,重量平均分子量(Mw)是135萬。 In a reaction device equipped with a stirrer, a thermometer, a reflux cooler, a dropping device, and a nitrogen introduction tube, after filling with nitrogen gas, 70 parts of ethyl acetate, 15 parts of acetone, 62.5 parts of butyl acrylate, and 19.0 parts of acrylic phenoxy are added. Ethyl ester, 16.0 parts of methyl acrylate, 1.5 parts of acrylic acid, 1.0 part of 2-hydroxyethyl acrylate, and 0.1 part of 2,2'-azobisisobutyronitrile (Wako Pure Chemical Industry Co., Ltd.) , Trade name V-60). While stirring, the reaction was carried out for 8 hours at the reflux temperature of the solvent in a nitrogen gas stream. After the completion of the reaction, 315 parts of toluene was added and then cooled to room temperature to prepare a polymer solution with a solid content of 20% by weight. The obtained (meth)acrylic copolymer A had a viscosity of 7000mPa‧s and a weight average molecular weight (Mw) of 1.35 million.

〈離子性化合物的調製〉 <Preparation of ionic compounds>

(離子性化合物C-1) (Ionic compound C-1)

在具備攪拌機、溫度計、冷卻器的四口燒瓶中,量取139.6g氯化2-羥乙基三甲銨、219.2g雙(氟化磺醯基)醯亞胺鉀及359g乙腈,在室溫攪拌2小時。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 139.6 g of 2-hydroxyethyl trimethylammonium chloride, 219.2 g of potassium bis(sulfonyl fluoride) imide and 359 g of acetonitrile, and stir at room temperature 2 hours.

將所獲得之反應液過濾後,將濾液濃縮並且乾燥,來獲得262g 2-羥乙基三甲銨=雙(氯化磺醯基)醯亞胺(產率92%)。 After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 262 g of 2-hydroxyethyltrimethylammonium=bis(sulfonyl chloride)imide (92% yield).

將所獲得之2-羥乙基三甲銨=雙(氯化磺醯基)醯亞胺,藉由NMR(核磁共振)(1H、13C)測定、FT-IR(傅立葉紅外線光譜)測定來鑑定並確認。 The obtained 2-hydroxyethyltrimethylammonium=bis(sulfonyl chloride) imide was measured by NMR (nuclear magnetic resonance) (1 H, 13 C) and FT-IR (Fourier infrared spectroscopy). Identify and confirm.

(離子性化合物C-2) (Ionic compound C-2)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取169.6g氯化雙(2-羥乙基)二甲銨、219.2g雙(氟化磺醯基)醯亞胺及389g乙腈,以室溫攪拌2小時。將所獲得之反應液過濾之後,將濾液濃縮並且乾燥,來獲得292g雙(2-羥乙基)二甲銨=雙(氟化磺醯基)醯亞胺鉀(產率93%)。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 169.6g of bis(2-hydroxyethyl)dimethylammonium chloride, 219.2g of bis(fluorinated sulfonyl)imidine, and 389g of acetonitrile. Stir at room temperature for 2 hours. After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 292 g of bis(2-hydroxyethyl)dimethylammonium=bis(fluorosulfonyl)imid potassium (yield 93%).

將所獲得之雙(2-羥乙基)二甲銨=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained bis(2-hydroxyethyl)dimethylammonium=bis(fluorosulfonyl)imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-3) (Ionic compound C-3)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取267.8g氯化雙(2-羥乙基)辛基甲銨、219.2g雙(氟化磺醯基)醯亞胺鉀及595g乙腈,以室溫攪拌2小時。 In a four-necked flask equipped with a stirrer, a thermometer and a cooler, measure 267.8g of bis(2-hydroxyethyl)octylmethylammonium chloride, 219.2g of potassium bis(sulfonyl fluoride) imide and 595g of acetonitrile , Stir at room temperature for 2 hours.

將所獲得之反應液過濾之後,將濾液濃縮並且乾燥,來獲得375g雙(2-羥乙基)辛基甲銨=雙(氟化磺醯基)醯亞胺(產率91%)。 After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 375 g of bis(2-hydroxyethyl)octylmethylammonium=bis(fluorinated sulfonyl)imide (yield 91%).

將所獲得之雙(2-羥乙基)辛基甲銨=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained bis(2-hydroxyethyl)octylmethylammonium=bis(fluorinated sulfonyl)imidine was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-4) (Ionic compound C-4)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取406g氯化雙(2-羥乙基)十八烯基甲銨、219.2g雙(氟化磺醯基)醯亞胺鉀及938g乙腈,以室溫攪拌2小時。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 406g of bis(2-hydroxyethyl)octadecenylmethylammonium chloride, 219.2g of potassium bis(sulfonyl fluoride) imide and 938g Acetonitrile, stir at room temperature for 2 hours.

將所獲得之反應液過濾之後,將濾液濃縮並且乾燥,來獲得496g雙(2-羥乙基)十八烯基甲銨=雙(氟化磺醯基)醯亞胺(產率90%)。 After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 496 g of bis(2-hydroxyethyl)octadecenylmethylammonium=bis(fluorinated sulfonyl)imide (yield 90%) .

將所獲得之雙(2-羥乙基)十八烯基甲銨=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained bis(2-hydroxyethyl)octadecenylmethylammonium=bis(fluorinated sulfonyl)imidine was identified by NMR (1 H, 13 C) measurement and FT-IR measurement. confirm.

(離子性化合物C-5) (Ionic compound C-5)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取200g氯化三(2-羥乙基)甲銨、219.2g雙(氟化磺醯基)醯亞胺鉀及420g乙腈,以室溫攪拌2小時。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 200g of tris(2-hydroxyethyl)methylammonium chloride, 219.2g of potassium bis(sulfonyl fluoride) imide and 420g of acetonitrile. Warm stirring for 2 hours.

將所獲得之反應液過濾之後,將濾液濃縮並且乾燥,來獲得310g三(2-羥乙基)甲銨=雙(氟化磺醯基)醯亞胺(產率90%)。 After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 310 g of tris(2-hydroxyethyl)methylammonium=bis(fluorinated sulfonyl)imidine (yield 90%).

將所獲得之三(2-羥乙基)甲銨=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained tris(2-hydroxyethyl)methylammonium=bis(fluorinated sulfonyl)imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-6) (Ionic compound C-6)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取169.6g氯化雙(2-羥乙基)二甲銨、287.1g雙(三氟甲烷磺醯基)醯亞胺鋰及457g乙腈,以室溫攪拌2小時。 In a four-necked flask equipped with a stirrer, thermometer, and cooler, measure 169.6g of bis(2-hydroxyethyl)dimethylammonium chloride, 287.1g of lithium bis(trifluoromethanesulfonyl)imide, and 457g of acetonitrile , Stir at room temperature for 2 hours.

將所獲得之反應液過濾之後,將濾液濃縮並且乾燥,來獲得385g雙(2-羥乙基)二甲銨=雙(三氟甲烷磺醯基)醯亞胺(產率93%)。 After filtering the obtained reaction liquid, the filtrate was concentrated and dried to obtain 385 g of bis(2-hydroxyethyl)dimethylammonium=bis(trifluoromethanesulfonyl)imidine (yield 93%).

將所獲得之雙(2-羥乙基)二甲銨=雙(三氟甲烷磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained bis(2-hydroxyethyl)dimethylammonium=bis(trifluoromethanesulfonyl)imidine was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-7) (Ionic compound C-7)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取286g溴化1-辛基-4-甲基吡啶、219.2g雙(氟化磺醯基)醯亞胺鉀及505g蒸餾水,以室溫攪拌2小時,並且靜置3小時。將所獲得之反應液的上清液去除,來獲得液狀的產物。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 286g of 1-octyl-4-methylpyridine bromide, 219.2g of potassium bis(fluorinated sulfonyl)imide, and 505g of distilled water. Warm stirring for 2 hours, and let stand for 3 hours. The supernatant of the obtained reaction liquid was removed to obtain a liquid product.

將所獲得之液狀產物在200g的蒸餾水中進行3次清洗,然後濃縮並且過濾,來獲得348g的1-辛基-4-甲基吡啶=雙(氟化磺醯基)醯亞胺(產率90%)。 The obtained liquid product was washed 3 times in 200 g of distilled water, and then concentrated and filtered to obtain 348 g of 1-octyl-4-methylpyridine = bis(fluorinated sulfonyl) imide (product Rate 90%).

將所獲得之1-辛基-4-甲基吡啶=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained 1-octyl-4-methylpyridine=bis(fluorinated sulfonyl)imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-8) (Ionic compound C-8)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取236g 1-乙基-3-甲基咪唑乙基硫酸鹽、219.2g雙(氟化磺醯基)醯亞胺鉀及455g蒸餾水,以室溫攪拌2小時,並且靜置3小時。將所獲得之反應液的上清液去除,來獲得液狀的產物。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 236g of 1-ethyl-3-methylimidazolium ethyl sulfate, 219.2g of potassium bis(fluorosulfonyl)imide and 455g of distilled water, Stir at room temperature for 2 hours, and let stand for 3 hours. The supernatant of the obtained reaction liquid was removed to obtain a liquid product.

將所獲得之液狀產物在140g的蒸餾水中進行3次清洗,然後濃縮並且過濾,來獲得233g 1-乙基-3-甲基咪唑=雙(氟化磺醯基)醯亞胺(產率80%)。 The obtained liquid product was washed three times in 140 g of distilled water, and then concentrated and filtered to obtain 233 g of 1-ethyl-3-methylimidazole=bis(fluorinated sulfonyl)imide (yield 80%).

將所獲得之1-乙基-3-甲基咪唑=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained 1-ethyl-3-methylimidazole=bis(fluorinated sulfonyl)imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-9) (Ionic compound C-9)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取207.8g氯化辛基三甲銨、219.2g雙(氟化磺醯基)醯亞胺鉀及427g蒸餾水,以室溫攪拌2小時,並且靜置3小時。將所獲得之反應液的上清液去除,來獲得液狀的產物。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 207.8g of octyltrimethylammonium chloride, 219.2g of potassium bis(sulfonyl fluoride) imide and 427g of distilled water, and stir at room temperature for 2 hours. And let it stand for 3 hours. The supernatant of the obtained reaction liquid was removed to obtain a liquid product.

將所獲得之液狀產物在176g的蒸餾水中進行3次清洗,然後濃縮並且過濾,來獲得324g辛基三甲銨=雙(氟化磺醯基)醯亞胺(產率92%)。 The obtained liquid product was washed three times in 176 g of distilled water, and then concentrated and filtered to obtain 324 g of octyltrimethylammonium=bis(fluorinated sulfonyl)imide (92% yield).

將所獲得之辛基三甲銨=雙(氟化磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained octyltrimethylammonium=bis(sulfonyl fluoride) imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

(離子性化合物C-10) (Ionic compound C-10)

在具備攪拌機、溫度計、冷卻器之四口燒瓶中,量取236g 1-乙基-3-甲基咪唑乙基硫酸鹽、287.1g雙(三氟甲烷磺醯基)醯亞胺鋰及523g蒸餾水,以室溫攪拌2小時,並且靜置3小時。將所獲得之反應液的上清液去除,來獲得液狀的產物。 In a four-necked flask equipped with a stirrer, a thermometer, and a cooler, measure 236g of 1-ethyl-3-methylimidazole ethyl sulfate, 287.1g of lithium bis(trifluoromethanesulfonyl)imide and 523g of distilled water , Stir at room temperature for 2 hours, and let stand for 3 hours. The supernatant of the obtained reaction liquid was removed to obtain a liquid product.

將所獲得之液狀產物在196g的蒸餾水中進行3次清洗,然後濃縮並且過濾,來獲得329g 1-乙基-3-甲基咪唑=雙(三氟甲烷磺醯基)醯亞胺(產率84%)。 The obtained liquid product was washed 3 times in 196 g of distilled water, and then concentrated and filtered to obtain 329 g of 1-ethyl-3-methylimidazole=bis(trifluoromethanesulfonyl)imide (product Rate 84%).

將所獲得之1-乙基-3-甲基咪唑=雙(三氟甲烷磺醯基)醯亞胺,藉由NMR(1H、13C)測定、FT-IR測定來鑑定並確認。 The obtained 1-ethyl-3-methylimidazole=bis(trifluoromethanesulfonyl)imide was identified and confirmed by NMR (1 H, 13 C) measurement and FT-IR measurement.

[實施例1] [Example 1]

〈評價用黏著劑組成物的調製〉 <Preparation of adhesive composition for evaluation>

相對於前述(甲基)丙烯酸系共聚物A溶液的100重量份(固形分換算值),添加1.5重量份(固形分換算值)前述離子性化合物C-1進行攪拌。進一步,混合0.08重量份交聯劑B(六亞甲基二異氰酸酯的雙縮脲型(旭化成工業股份有限公司製造,商品名DURANATE 24A-100)),來獲得評價用黏著劑組成物。 With respect to 100 parts by weight (solid content conversion value) of the (meth)acrylic copolymer A solution, 1.5 parts by weight (solid content conversion value) of the ionic compound C-1 was added and stirred. Furthermore, 0.08 parts by weight of crosslinking agent B (bisuret type of hexamethylene diisocyanate (manufactured by Asahi Kasei Industrial Co., Ltd., trade name DURANATE 24A-100)) was mixed to obtain an adhesive composition for evaluation.

〈評價用黏著薄片的製作〉 <Production of adhesive sheet for evaluation>

在經剝離處理而成的聚對苯二甲酸乙二酯薄膜(PET薄膜)上,將利用前述調製而成的評價用黏著劑組成物,以乾燥塗膜厚成為20μm的方式進行塗佈,使其在90℃乾燥4分鐘並且移置至三乙醯化纖維素薄膜(TAC薄膜)上,使其在20℃、65% RH的氣氛中固化7天,來獲得評價用黏著薄片。 On the polyethylene terephthalate film (PET film) that has been peeled off, the adhesive composition for evaluation prepared as described above is applied so that the dry film thickness becomes 20 μm, so that This was dried at 90°C for 4 minutes, transferred to a triacetylated cellulose film (TAC film), and cured in an atmosphere of 20°C and 65% RH for 7 days to obtain an adhesive sheet for evaluation.

使用所獲得之評價用黏著薄片,進行耐久性評價。將結果顯示於表1。 Using the obtained adhesive sheet for evaluation, durability evaluation was performed. The results are shown in Table 1.

[實施例2~6、比較例1~4] [Examples 2 to 6, Comparative Examples 1 to 4]

除了將實施例1中的離子性化合物的種類變更為如表1所述,與實施例1同樣地操作,調製並製作評價用黏著劑組 成物、評價用黏著薄片,來進行耐久性評價。將結果顯示於表1。 Except that the type of ionic compound in Example 1 was changed to that described in Table 1, the same procedure as in Example 1 was carried out to prepare and create an adhesive set for evaluation. The finished product and the adhesive sheet for evaluation were evaluated for durability. The results are shown in Table 1.

[實施例7] [Example 7]

〈評價用黏著劑組成物的調製〉 <Preparation of adhesive composition for evaluation>

相對於前述(甲基)丙烯酸系共聚物A溶液的100重量份(固形分換算值),添加1.5重量份(固形分換算值)前述離子性化合物C-1進行攪拌,來獲得評價用黏著劑組成物。 With respect to 100 parts by weight (solid content conversion value) of the (meth)acrylic copolymer A solution, 1.5 parts by weight (solid content conversion value) of the aforementioned ionic compound C-1 was added and stirred to obtain an adhesive for evaluation Composition.

〈評價用黏著薄片的製作〉 <Production of adhesive sheet for evaluation>

在經剝離處理而成的聚對苯二甲酸乙二酯薄膜(PET薄膜)上,將利用前述調製而成的評價用黏著劑組成物,以乾燥塗膜厚成為20μm的方式進行塗佈,使其在90℃乾燥4分鐘並且移置至三乙醯化纖維素薄膜(TAC薄膜)上,使其在20℃、65%RH的氣氛中固化1天,來獲得評價用黏著薄片。 On the polyethylene terephthalate film (PET film) that has been peeled off, the adhesive composition for evaluation prepared as described above is applied so that the dry film thickness becomes 20 μm, so that This was dried at 90°C for 4 minutes, transferred to a triacetylated cellulose film (TAC film), and cured in an atmosphere of 20°C and 65% RH for 1 day to obtain an adhesive sheet for evaluation.

使用所獲得之評價用黏著薄片,進行耐久性評價。將結果顯示於表1。 Using the obtained adhesive sheet for evaluation, durability evaluation was performed. The results are shown in Table 1.

[實施例8~11、比較例5~7] [Examples 8-11, Comparative Examples 5-7]

除了將實施例7中的離子性化合物的種類變更為如表1所述,與實施例7同樣地操作,調製並製作評價用黏著劑組成物、評價用黏著薄片,來進行耐久性評價。將結果顯示於表1。 Except that the type of ionic compound in Example 7 was changed as described in Table 1, the same procedure as in Example 7 was carried out to prepare an evaluation adhesive composition and an evaluation adhesive sheet, and the durability was evaluated. The results are shown in Table 1.

[實施例12] [Example 12]

〈評價用黏著劑組成物的調製〉 <Preparation of adhesive composition for evaluation>

相對於前述(甲基)丙烯酸系共聚物A溶液的100重量份(固形分換算值),添加1.5重量份(固形分換算值)前述離子性化合物C-1進行攪拌。進一步,混合0.08重量份交聯劑B(六亞甲基二異氰酸酯的雙縮脲型(旭化成工業股份有限公司製造,商品名DURANATE 24A-100)),來獲得評價用黏著劑組成物。 With respect to 100 parts by weight (solid content conversion value) of the (meth)acrylic copolymer A solution, 1.5 parts by weight (solid content conversion value) of the ionic compound C-1 was added and stirred. Furthermore, 0.08 parts by weight of crosslinking agent B (bisuret type of hexamethylene diisocyanate (manufactured by Asahi Kasei Industrial Co., Ltd., trade name DURANATE 24A-100)) was mixed to obtain an adhesive composition for evaluation.

〈評價用黏著薄片的製作〉 <Production of adhesive sheet for evaluation>

在經剝離處理而成的聚對苯二甲酸乙二酯薄膜(PET薄膜)上,將利用前述調製而成的評價用黏著劑組成物,以乾燥塗膜厚成為20μm的方式進行塗佈,使其在90℃乾燥4分鐘並且移置至未經剝離處理之PET薄膜上,使其在20℃、65% RH的氣氛中固化7天,來獲得評價用黏著薄片。 On the polyethylene terephthalate film (PET film) that has been peeled off, the adhesive composition for evaluation prepared as described above is applied so that the dry film thickness becomes 20 μm, so that This was dried at 90° C. for 4 minutes, transferred to a PET film without peeling treatment, and cured in an atmosphere of 20° C. and 65% RH for 7 days to obtain an adhesive sheet for evaluation.

剝除獲得之評價用黏著薄片的經剝離處理而成之PET薄膜,以該狀態,進行耐久性評價。將結果顯示於表1。 The PET film obtained by peeling off the obtained adhesive sheet for evaluation was peeled off, and durability evaluation was performed in this state. The results are shown in Table 1.

[實施例13~17、比較例8~11] [Examples 13-17, Comparative Examples 8-11]

除了將實施例12中的離子性化合物的種類變更為如表1所述,與實施例12同樣地操作,調製並製作評價用黏著劑組成物、評價用黏著薄片,來進行耐久性評價。將結果顯示於表1。 Except for changing the type of the ionic compound in Example 12 to be as described in Table 1, the same procedure as in Example 12 was carried out to prepare an evaluation adhesive composition and an evaluation adhesive sheet to perform durability evaluation. The results are shown in Table 1.

[實施例18] [Example 18]

〈評價用黏著劑組成物的調製〉 <Preparation of adhesive composition for evaluation>

相對於前述(甲基)丙烯酸系共聚物A溶液的100重量份(固形分換算值),添加1.5重量份(固形分換算值)前述離子性化合物C-1進行攪拌,來獲得評價用黏著劑組成物。 With respect to 100 parts by weight (solid content conversion value) of the (meth)acrylic copolymer A solution, 1.5 parts by weight (solid content conversion value) of the aforementioned ionic compound C-1 was added and stirred to obtain an adhesive for evaluation Composition.

〈評價用黏著薄片的製作〉 <Production of adhesive sheet for evaluation>

在經剝離處理而成的聚對苯二甲酸乙二酯薄膜(PET薄膜)上,將利用前述調製而成的評價用黏著劑組成物,以乾燥塗膜厚成為20μm的方式進行塗佈,使其在90℃乾燥4分鐘並且移置至未經剝離處理之PET薄膜上,使其在20℃、65% RH的氣氛中固化1天,來獲得評價用黏著薄片。 On the polyethylene terephthalate film (PET film) that has been peeled off, the adhesive composition for evaluation prepared as described above is applied so that the dry film thickness becomes 20 μm, so that This was dried at 90° C. for 4 minutes, transferred to a PET film without peeling treatment, and cured in an atmosphere of 20° C. and 65% RH for 1 day to obtain an adhesive sheet for evaluation.

剝除所獲得之評價用黏著薄片的經剝離處理而成之PET薄膜,以該狀態,進行耐久性評價。將結果顯示於表1。 The PET film obtained by peeling off the obtained adhesive sheet for evaluation was peeled off, and durability evaluation was performed in this state. The results are shown in Table 1.

[實施例19~22、比較例12~14] [Examples 19-22, Comparative Examples 12-14]

除了將實施例18中的離子性化合物的種類變更為如表1所述,與實施例18同樣地操作,調製並製作評價用黏著劑組成物、評價用黏著薄片,來進行耐久性評價。將結果顯示於表1。 Except that the type of ionic compound in Example 18 was changed to that described in Table 1, the same procedure as in Example 18 was carried out to prepare an evaluation adhesive composition and an evaluation adhesive sheet, and the durability was evaluated. The results are shown in Table 1.

[評價結果] [Evaluation results]

[表1]

Figure 105123925-A0202-12-0036-7
Figure 105123925-A0202-12-0037-8
[Table 1]
Figure 105123925-A0202-12-0036-7
Figure 105123925-A0202-12-0037-8

藉由前述實施例及比較例可知:當使用本發明的黏著劑用抗靜電劑時,在耐久試驗後亦未發現表面電阻值的變動,並且即便在高溫高溼條件下仍為耐久性優異的黏著劑用抗靜電劑。 From the foregoing examples and comparative examples, it can be seen that when the antistatic agent for adhesives of the present invention is used, no change in the surface resistance value is found after the durability test, and it is excellent in durability even under high temperature and high humidity conditions. Antistatic agent for adhesives.

[產業上的可利用性] [Industrial availability]

根據本發明,作為即便在高溫高溼的條件下耐久性亦優異的黏著劑用抗靜電劑而有用。 According to the present invention, it is useful as an antistatic agent for adhesives that is excellent in durability even under conditions of high temperature and high humidity.

雖然參照了詳細或特定的態樣來說明本發明,但是只要不脫離本發明的精神與範圍,對本發明所屬技術領域中具有通常知識者而言,能夠容易加入各式各樣的變化或修正。 Although the present invention has been described with reference to detailed or specific aspects, as long as it does not depart from the spirit and scope of the present invention, a person with ordinary knowledge in the technical field to which the present invention belongs can easily add various changes or modifications.

本說明書,基於2015年7月28日申請專利的日本專利申請案2015-148214的內容,並且參照該內容來併入本說明書中。 This specification is based on the content of Japanese Patent Application 2015-148214 for which a patent was filed on July 28, 2015, and is incorporated into this specification with reference to the content.

Claims (1)

一種黏著劑用抗靜電劑,其含有離子性化合物,其中,前述離子性化合物的陽離子部位,是以下述式(2)或(3)所示之陽離子,並且陰離子部位是雙(氟化磺醯基)醯亞胺,
Figure 105123925-A0305-02-0041-1
Figure 105123925-A0305-02-0041-2
上述式(2)或(3)中,R1表示碳數1以上且18以下的烴基,亦可以包含雜原子;R2表示碳數2以上且4以下的烴基,並且複數個R1或R2,各自可以相同亦可以不同;該黏著劑用抗靜電劑的添加量,相對於黏著劑聚合物100質量份是0.01質量份以上且10質量份以下,但不包括5質量份以上且10質量份以下。
An antistatic agent for adhesives, which contains an ionic compound, wherein the cation site of the ionic compound is a cation represented by the following formula (2) or (3), and the anion site is a bis(fluorinated sulfonate) Base) imine,
Figure 105123925-A0305-02-0041-1
Figure 105123925-A0305-02-0041-2
In the above formula (2) or (3), R 1 represents a hydrocarbon group with a carbon number of 1 or more and 18 or less, and may also include a heteroatom; R 2 represents a hydrocarbon group with a carbon number of 2 or more and 4 or less, and a plurality of R 1 or R 2. Each can be the same or different; the addition amount of the antistatic agent for the adhesive is 0.01 parts by mass or more and 10 parts by mass or less, but not including 5 parts by mass or more and 10 parts by mass relative to 100 parts by mass of the adhesive polymer Servings or less.
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