JPH0434893A - Phosphor for organic dispersion type el - Google Patents

Phosphor for organic dispersion type el

Info

Publication number
JPH0434893A
JPH0434893A JP2140232A JP14023290A JPH0434893A JP H0434893 A JPH0434893 A JP H0434893A JP 2140232 A JP2140232 A JP 2140232A JP 14023290 A JP14023290 A JP 14023290A JP H0434893 A JPH0434893 A JP H0434893A
Authority
JP
Japan
Prior art keywords
phosphor
resin
weight
solvent
high dielectric
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2140232A
Other languages
Japanese (ja)
Inventor
Hidenori Eriguchi
江里口 秀紀
Fumio Ishigami
石上 富美男
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Resonac Corp
Original Assignee
Hitachi Chemical Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hitachi Chemical Co Ltd filed Critical Hitachi Chemical Co Ltd
Priority to JP2140232A priority Critical patent/JPH0434893A/en
Publication of JPH0434893A publication Critical patent/JPH0434893A/en
Pending legal-status Critical Current

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  • Luminescent Compositions (AREA)
  • Electroluminescent Light Sources (AREA)

Abstract

PURPOSE:To improve the brightness of a fluorescent layer by coating phosphor particles with liquid high induction resin, and equally dispersing the particles formed in a capsule structure through thermosetting resin. CONSTITUTION:Liquid high induction resin 2 is stuck to a phosphor 1 for an organic dispersion type EL, for which activator such as copper or manganese and reactivator such as chroline and bromine are doped in a ZnS particle, and a thermosetting resin 3 is applied thereupon, and hardened. As the resin 2, 0.1-5 weight% of the phosphor weight such as cyanoethylene saccharose and the like is diluted almost by six times by a solvent such as acetone, and after it is impregnated in the phosphor, it is heated, so as to evaporate the solvent. 0.01-1 weight % moisture hardening hexamethylene diisocyanate and the like to the phosphor weight of resin 3 is diluted and impregnated by a nonpolar solvent of six times such as benzene, and then heated, so as to evaporate the solvent.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は、液状の高誘電樹脂を蛍光体に付活固定して優
れた輝度を有する有機分散型EL用蛍光体に関する。
DETAILED DESCRIPTION OF THE INVENTION [Industrial Field of Application] The present invention relates to an organically dispersed EL phosphor having excellent brightness, in which a liquid high dielectric resin is activated and fixed to the phosphor.

〔従来の技術〕[Conventional technology]

有機分散型EL用の蛍光体は、粒径約30μmのZnS
粒子で、これに銅、マンガン等の活性剤と塩素、臭素な
どの賦活剤tドープしたものが一般である。
The phosphor for organic dispersed EL is ZnS with a particle size of approximately 30 μm.
Generally, particles are doped with an activator such as copper or manganese and an activator such as chlorine or bromine.

有機分散型ELパネルは、第2図にその断面を示すよう
に、透明導電性電′&4と背面電&70間に、高誘電樹
脂中に蛍光体を分散した蛍光層5と高誘電樹脂中にチタ
ン酸バリウム等の高誘′t@に分散した絶縁層6を重ね
、その外ill防湿フィルム8で封止し、透明導電性電
極と背面!極間に電圧を印加すると蛍光層中の蛍光体が
発光する。
As shown in the cross section of Fig. 2, the organic dispersion type EL panel has a fluorescent layer 5 in which phosphor is dispersed in a high dielectric resin and a fluorescent layer 5 in which a phosphor is dispersed in a high dielectric resin, between a transparent conductive electrode 4 and a back electrode 70. An insulating layer 6 dispersed in a high dielectric material such as barium titanate is layered, sealed with an illumination moisture-proof film 8, and a transparent conductive electrode is placed on the back! When a voltage is applied between the electrodes, the phosphor in the fluorescent layer emits light.

〔発明が解決しようとする課題〕[Problem to be solved by the invention]

有機分散型ELの駆動条件會一定にして輝度耐向上する
Kは、蛍光体全分散する誘電体を高誘電率のものとする
と良い。しかし、誘電率が30以上の高誘を樹脂は殆ど
液状である。液中に分散した蛍光体はELとして使用中
[凝集するために実用化は不可能である。液状の高誘を
樹脂を用いる例には、特公平1−26160に示されて
いるようにゲル化剤全添加してゲル状とする方法がある
In order to improve the brightness of the organic dispersion type EL under constant driving conditions, it is preferable to use a dielectric material with a high dielectric constant in which the phosphor is completely dispersed. However, most resins having a high dielectric constant of 30 or more are in a liquid state. The phosphor dispersed in the liquid is used as an EL (it is impossible to put it to practical use because it aggregates). An example of using a liquid high-density resin is a method of making a gel by adding all the gelling agent, as shown in Japanese Patent Publication No. 1-26160.

本発明は、液状の高誘電樹脂kf’tffi固足する蛍
光体とその製造方法を提供することを目的とする。
An object of the present invention is to provide a phosphor that adheres to liquid high dielectric resin kf'tffi and a method for manufacturing the same.

〔課題を解決するための手段〕[Means to solve the problem]

上記の目的を達成するために1本発明は、第1図に示す
ように、ZnS 程子に銅、マンガン等の活性剤と塩素
、臭素などの賦活剤會ドープした有機分散型EL用蛍光
体1に液状の高誘電樹脂2を付着し、その上に熱硬化性
樹脂3を被覆硬化した有機分散型EL用蛍光体でめる〇 液状の高誘電樹脂としては、シアノエチル化サッカロー
ス、シアノエチル化シュクロース、シアノエチル化ンル
ピトール等がある。
In order to achieve the above object, the present invention is directed to an organic dispersion type EL phosphor 1 in which ZnS is doped with an activator such as copper and manganese and an activator such as chlorine and bromine, as shown in FIG. A liquid high dielectric resin 2 is attached to the resin, and a thermosetting resin 3 is coated on top of the cured organic dispersed EL phosphor.As the liquid high dielectric resin, cyanoethylated sucrose and cyanoethylated sucrose are used. , cyanoethylated lupitor, etc.

液状の高誘電樹脂中として蛍光体重量の0.1〜5重量
%をアセトン、MEK、DMFなどの溶剤で6倍程度に
希釈したもの全蛍光体に含浸後、加熱して溶剤を揮散す
る。これに、熱硬化f!ll:樹脂の蛍光体重量に対す
るCLO1〜1M量%t6倍程度の非極性溶剤ベンゼン
、トルエン等で希釈した溶液上含浸し、加熱して溶剤上
揮散する〇上記の方法において、液状の高誘電樹脂が[
11重i1%以下では輝度が向上せず、5重量%以上で
あると蛍光体粒子が樹脂で凝集する0熱硬化性樹脂が[
LO11j1%未満であると液状の高誘電樹脂を被覆す
ることができず、lk:1%を越えると蛍光体粒子相互
の凝集がおこり硬化する。
A liquid high dielectric resin containing 0.1 to 5% by weight of the phosphor is diluted to about 6 times with a solvent such as acetone, MEK, or DMF, and is impregnated into the entire phosphor, and then heated to volatilize the solvent. In addition to this, heat curing f! ll: CLO 1 to 1 M amount % relative to the fluorescent weight of the resin t Impregnated on a solution diluted with a non-polar solvent such as benzene or toluene in an amount of about 6 times, heated and volatilized on the solvent 〇 In the above method, liquid high dielectric resin but[
If the 11 weight i is less than 1%, the brightness will not improve, and if it is more than 5 wt%, the phosphor particles will aggregate with the resin.
If LO11j is less than 1%, the liquid high dielectric resin cannot be coated, and if lk exceeds 1%, phosphor particles will aggregate and harden.

使用する熱硬化性樹脂を;、水分硬化性のへキテメテレ
ンジイソシアネートが最も良いが、エポキシ樹脂に硬化
剤を添加したものも良い。
As for the thermosetting resin to be used, moisture-curable hexitemethylene diisocyanate is best, but epoxy resin with a curing agent added may also be used.

〔作用〕[Effect]

本発明の蛍光体は、常法で処理したZnS ′E1子を
液状の高誘電樹脂で被い、さらにこれを熱硬化樹脂で被
覆するカプセル構造とする。
The phosphor of the present invention has a capsule structure in which ZnS'E1 molecules treated by a conventional method are covered with a liquid high dielectric resin, and this is further covered with a thermosetting resin.

この構造を有するために、溶剤に溶解したシアノエチル
化セルロース系の高誘電樹脂中に分散しても、溶剤によ
って硬化樹脂が溶解しない結果として、蛍光体の周りに
高am樹脂が存在して蛍光体の発光が強いことになる。
Due to this structure, even when dispersed in a cyanoethylated cellulose-based high dielectric resin dissolved in a solvent, the cured resin is not dissolved by the solvent, and as a result, a high am resin exists around the phosphor, causing the phosphor to This means that the light emission will be strong.

〔実施例〕〔Example〕

(実施例) ZnS  tc活性剤の銅と賦活剤の塩素、臭素tドー
プした有機分散型EL用蛍光体を原料とし、蛍光体重量
の2重量%のシアノエチル化すッカq−ス全6倍のアセ
トンで希釈した溶液上含浸し、120℃で3時間加熱乾
燥してアセトン會揮散する。
(Example) Using an organic dispersed EL phosphor doped with copper as a ZnS tc activator, chlorine as an activator, and bromine as a raw material, cyanoethylated phosphor of 2% by weight of the phosphor weight was used as a total of 6 times the phosphor weight. It was impregnated with a solution diluted with acetone, dried by heating at 120° C. for 3 hours, and then volatilized with acetone.

サラに、蛍光体重量のα1重量%のヘキサメチレンジイ
ソシアネート′に6倍量のトルエンに希釈した溶液を含
浸し、150℃で3時間加熱乾燥してトルエン紮揮散し
て得た蛍光体を有機分散型EL用蛍光体とした。
A phosphor was impregnated with a solution of hexamethylene diisocyanate, α1% by weight of the phosphor weight, diluted with 6 times the amount of toluene, and the resulting phosphor was organically dispersed by heating and drying at 150°C for 3 hours and volatilizing the toluene. It was used as a type EL phosphor.

(比較例1) 実施例と同じ原料蛍光体に同じ方法でシアノエチル化サ
ッカロース溶液を含浸しアセトンを揮散して得た蛍光体
を有機分散型EL用蛍光体とした。
(Comparative Example 1) A phosphor obtained by impregnating the same raw material phosphor as in Example with a cyanoethylated sucrose solution and volatilizing acetone was used as an organically dispersed EL phosphor.

(比較例2) 実施例1で用いたと同じ原料蛍光体を有機分散型EL用
蛍光体とした。
(Comparative Example 2) The same raw material phosphor used in Example 1 was used as an organic dispersed EL phosphor.

(試験) 実施例及び比較例1,2で得たEL用蛍光体を溶剤DM
Fに溶解したシアノエチル化セルロース糸高誘電樹脂溶
液中に分散して蛍光層ペースト會作成した。別に溶剤D
 M F K#解したシア、ノエテル化セルロース糸高
誘電樹脂にチタン酸バリウムを分散した絶縁層ペースト
會作成した。M2図に示すように、背面電&7に絶縁層
6として上記絶縁層ベースIt−印刷又はコーターで塗
布した後。
(Test) The EL phosphors obtained in Examples and Comparative Examples 1 and 2 were mixed with solvent DM.
The cyanoethylated cellulose threads dissolved in F were dispersed in a high dielectric resin solution to prepare a fluorescent layer paste. Solvent D separately
An insulating layer paste was prepared by dispersing barium titanate in a high dielectric resin of shear and noetherized cellulose yarns with M F K #. As shown in Figure M2, the above insulating layer bases as an insulating layer 6 on the backside electrode &7 - after printing or coating with a coater.

土肥3alの蛍光層ペーストを印刷又はコーターで塗布
し、乾燥機中で光分にDMFi揮散した。さらに透明導
電性電極4會重ね、32ツ化塩化エチレンフイルムで全
体を封止して有機分散型ELi作成した。上記の方法で
得た各ELの特性を表1に示す。輝度は100v、40
0 Hz 印加時の値。
A phosphor layer paste of Doi 3al was applied by printing or using a coater, and DMFi was vaporized to light in a dryer. Furthermore, four transparent conductive electrodes were stacked and the entire structure was sealed with ethylene chloride film to produce an organic dispersion type ELi. Table 1 shows the characteristics of each EL obtained by the above method. Brightness is 100v, 40
Value when 0 Hz is applied.

寿命は20℃、60%RHKおける輝度半減時間である
The lifespan is the luminance half-life at 20° C. and 60% RHK.

表1 〔発明の効果〕 実施例の結果から、蛍光体粒子上液状の高誘電樹脂で被
傍しさらに熱硬化樹脂によっ【カプセル構造とした粒子
が均等分散する蛍光層が高輝度を示すことは、比較例1
,2に比べて顕著であることが確認された。
Table 1 [Effects of the invention] From the results of the examples, it was found that the fluorescent layer in which the particles were evenly dispersed in a capsule structure by covering the fluorescent particles with a liquid high dielectric resin and further by a thermosetting resin exhibited high brightness. is Comparative Example 1
, 2 was confirmed.

又1本発明蛍光体の寿命は従来法と変わらないことが明
らかである。
It is also clear that the life of the phosphor of the present invention is the same as that of the conventional method.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の有機分散型EL用蛍光体の構造説明図
、rR2図は一般の有機分散型ELの構造図である0 1・・・・・・蛍光体、    2・・・・・・液状高
誘電樹脂。 3・・・・・・熱硬化性樹脂、4・・・・・・透明4電
性電極。 5・・・・・・蛍光層、    6・・・・・・絶縁層
、7・・・・・・背面電極、  8・・・・・・防湿フ
ィルム。 第1図
Fig. 1 is a structural explanatory diagram of the organic dispersion type EL phosphor of the present invention, and rR2 diagram is a structural diagram of a general organic dispersion type EL.・Liquid high dielectric resin. 3...Thermosetting resin, 4...Transparent 4-electrode electrode. 5... Fluorescent layer, 6... Insulating layer, 7... Back electrode, 8... Moisture-proof film. Figure 1

Claims (2)

【特許請求の範囲】[Claims] 1.銅、マンガン等の活性剤と塩素、臭素等の賦活剤を
ドープした蛍光体粒子の表面に、液状の高誘電樹脂層を
設け、さらにその外面に熱硬化樹脂層を形成してカプセ
ル構造として成る有機分散型EL用蛍光体。
1. A liquid high dielectric resin layer is provided on the surface of phosphor particles doped with an activator such as copper or manganese and an activator such as chlorine or bromine, and a thermosetting resin layer is further formed on the outer surface to form a capsule structure. Organic dispersed EL phosphor.
2.液状の高誘電樹脂を蛍光体粒子重量の0.1〜5重
量%とし、熱硬化樹脂を蛍光体粒子重量の0.01〜1
重量%とすることを特徴とする請求項1記載の有機分散
型EL用蛍光体。
2. The liquid high dielectric resin is 0.1 to 5% by weight of the weight of the phosphor particles, and the thermosetting resin is 0.01 to 1% of the weight of the phosphor particles.
The organic dispersion type EL phosphor according to claim 1, wherein the phosphor is expressed as % by weight.
JP2140232A 1990-05-30 1990-05-30 Phosphor for organic dispersion type el Pending JPH0434893A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2140232A JPH0434893A (en) 1990-05-30 1990-05-30 Phosphor for organic dispersion type el

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2140232A JPH0434893A (en) 1990-05-30 1990-05-30 Phosphor for organic dispersion type el

Publications (1)

Publication Number Publication Date
JPH0434893A true JPH0434893A (en) 1992-02-05

Family

ID=15263983

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2140232A Pending JPH0434893A (en) 1990-05-30 1990-05-30 Phosphor for organic dispersion type el

Country Status (1)

Country Link
JP (1) JPH0434893A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0636878A (en) * 1992-07-15 1994-02-10 Nippon Seiki Co Ltd Electroluminescent element
JP5986225B2 (en) * 2012-12-25 2016-09-06 タツモ株式会社 Dispersion type EL phosphor manufacturing method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0636878A (en) * 1992-07-15 1994-02-10 Nippon Seiki Co Ltd Electroluminescent element
JP5986225B2 (en) * 2012-12-25 2016-09-06 タツモ株式会社 Dispersion type EL phosphor manufacturing method

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