JPH05169840A - Infrared heating type thermal transfer recording sheet - Google Patents

Infrared heating type thermal transfer recording sheet

Info

Publication number
JPH05169840A
JPH05169840A JP3339071A JP33907191A JPH05169840A JP H05169840 A JPH05169840 A JP H05169840A JP 3339071 A JP3339071 A JP 3339071A JP 33907191 A JP33907191 A JP 33907191A JP H05169840 A JPH05169840 A JP H05169840A
Authority
JP
Japan
Prior art keywords
dye
infrared absorbing
thermal transfer
absorbing substance
recording sheet
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
JP3339071A
Other languages
Japanese (ja)
Inventor
Yukichi Murata
勇吉 村田
Makoto Kawana
真 川名
Toshiyoshi Urano
年由 浦野
Shuichi Maeda
修一 前田
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.)
Mitsubishi Kasei Corp
Original Assignee
Mitsubishi Kasei Corp
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 Mitsubishi Kasei Corp filed Critical Mitsubishi Kasei Corp
Priority to JP3339071A priority Critical patent/JPH05169840A/en
Publication of JPH05169840A publication Critical patent/JPH05169840A/en
Pending legal-status Critical Current

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  • Thermal Transfer Or Thermal Recording In General (AREA)

Abstract

PURPOSE:To obtain sharp recorded matter with high density, in the title sheet having a layer containing a thermal transfer dye and an infrared absorbing substance by using a metal-containing indoanilin compound represented by a specific chemical formula as the infrared absorbing substance. CONSTITUTION:A thermal transfer recording sheet using infrared laser as a heating means is obtained by providing a layer containing a thermal transfer dye and an infrared absorbing substance on a base film. This recording sheet is heated to transfer the dye to an image receiving sheet to perform recording. In this case, a metalcontaining indoanilin compound represented by general formula (wherein M is an Ni atom, a Cu atom or a Co atom, rings A-C may have substituents, R<1> and R<2> are alkyl group which may be substituted or an alkenyl group which may be substituted, Z<-> is an anion and n is 2 or 3) is used as the infrared absorbing substance. By this constitution, the recording sheet having high absorption efficiency of infrared laser beam and high conversion efficiency of absorbed beam to heat is obtained.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は感熱転写記録,特に色素
転写型感熱転写記録に使用される感熱転写記録用シート
に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a heat-sensitive transfer recording sheet used for heat-sensitive transfer recording, particularly dye transfer type heat-sensitive transfer recording.

【0002】[0002]

【従来の技術】色素転写型感熱転写記録は、ベースフィ
ルム上に熱移行性の色素を含む色材層を有する感熱転写
シートと、色素受容層を表面に有する受像シートを重ね
合わせ、感熱転写シートを加熱する事により感熱転写シ
ート中の色素を受像シートに転写する事により記録を行
う記録方法である。本記録方法は加熱エネルギーの大き
さにより色素の転写量を制御し、階調表現ができるた
め、ビデオプリンターなどフルカラー画像記録用に応用
されている。
2. Description of the Related Art A dye-transfer type heat-sensitive transfer recording is a heat-sensitive transfer sheet in which a heat-sensitive transfer sheet having a coloring material layer containing a heat transferable dye on a base film and an image-receiving sheet having a dye-receiving layer on the surface are superposed. Is a recording method in which the dye in the heat-sensitive transfer sheet is transferred to the image-receiving sheet by heating to record. This recording method is applied to full-color image recording such as a video printer because the transfer amount of the dye can be controlled by the amount of heating energy and gradation can be expressed.

【0003】従来、転写シートの加熱手段としては電気
信号に応じて発熱する発熱抵抗体素子を基板上にライン
状に形成したライン型サーマルヘッドが用いられてい
る。しかし、基板上に多数の発熱抵抗体素子を均一に形
成する事が難しいため大きなサーマルヘッドの製造が難
しく、大画面の画像記録が難しい。又、発熱抵抗体素子
の形成密度にも限界があるため、高解像度を要求される
画像記録にも問題がある。
Conventionally, as a heating means for the transfer sheet, a line type thermal head in which a heating resistor element which generates heat in response to an electric signal is formed in a line on a substrate is used. However, it is difficult to uniformly form a large number of heating resistor elements on the substrate, which makes it difficult to manufacture a large thermal head, and it is difficult to record an image on a large screen. In addition, since there is a limit to the formation density of the heating resistor elements, there is a problem in image recording that requires high resolution.

【0004】これらのサーマルヘッドの問題を解決する
ために、加熱手段としてレーザー光を利用する事が提案
されている。レーザー光としては特に、小型で高エネル
ギーの得られる半導体レーザーが有利である。現在、半
導体レーザーとしては発信波長が650〜850nmの
赤〜近赤外領域のものがあるが、750〜850nmの
近赤外領域のものが主に使用されている。これらの半導
体レーザーを加熱手段として転写シートを加熱するため
には、レーザー光を吸収し、吸収した光を熱エネルギー
に変換する光熱変換物質を転写シート中に含有させる事
が必要である。ここで用いられる光熱変換物質は、転写
シートの記録感度を直接左右し、又、記録画像の画質に
も影響を与えるため非常に重要である。この光熱変換物
質としては次の様な特性が要求される。
In order to solve the problems of these thermal heads, it has been proposed to use laser light as a heating means. As the laser light, a semiconductor laser that is small and obtains high energy is particularly advantageous. Currently, there are semiconductor lasers having a transmission wavelength of 650 to 850 nm in the red to near infrared region, but those in the near infrared region of 750 to 850 nm are mainly used. In order to heat the transfer sheet by using these semiconductor lasers as a heating means, it is necessary to include a photothermal conversion substance that absorbs laser light and converts the absorbed light into heat energy in the transfer sheet. The photothermal conversion substance used here is very important because it directly affects the recording sensitivity of the transfer sheet and also affects the quality of the recorded image. The photothermal conversion substance is required to have the following characteristics.

【0005】・レーザー光の吸収効率が良い事 ・吸収光の熱への変換効率が良い事 ・溶剤,又は水に溶解性,又は分散性が良く塗工液の安
定性が良好で、フィルムに塗工しやすい事 ・転写シートの保存時に安定である事、又一緒に使用さ
れる色素に悪影響を与えない事 ・熱移行性がない事、又は色素に比べて非常に小さい事 この目的の光熱変換物質としては、例えば特開昭63−
319191,特開昭58−16888,特開平2−2
074、その他にも多数の物が提案されている。しか
し、これらの物は必ずしも上記の特性を全て満足する物
ではなく、更に良好な物が要望されている。
Good absorption efficiency of laser light Good conversion efficiency of absorbed light to heat Good solubility or dispersibility in solvent or water, good stability of coating solution, good film Easy to coat ・ Stable when the transfer sheet is stored, and does not adversely affect the dyes used together ・ No heat transfer, or very small compared to dyes As the conversion substance, for example, JP-A-63-
319191, JP-A-58-16888, JP-A-2-2
074 and many others have been proposed. However, these products do not always satisfy all the above-mentioned characteristics, and more excellent products are demanded.

【0006】[0006]

【発明が解決しようとする課題】本発明は、赤外線半導
体レーザー等の赤外線を加熱手段とした感熱転写記録に
於て、特性の優れた光熱変換物質として特定の構造を有
する赤外線吸収剤を使用する事により、転写感度が良好
で、高画質の記録物を与える事のできる感熱転写記録シ
ートを提供する事を目的とする。
DISCLOSURE OF THE INVENTION The present invention uses an infrared absorbent having a specific structure as a photothermal conversion substance having excellent characteristics in thermal transfer recording using infrared rays such as an infrared semiconductor laser as a heating means. In other words, it is an object of the present invention to provide a heat-sensitive transfer recording sheet having good transfer sensitivity and capable of providing a high quality recorded matter.

【0007】[0007]

【課題を解決するための手段】本発明の感熱転写記録用
シートはベースフィルム上に熱移行性色素及び赤外線吸
収物質を含む層を有するものであって、赤外線吸収物質
が下記一般式(I)
The heat-sensitive transfer recording sheet of the present invention has a layer containing a heat transferable dye and an infrared absorbing substance on a base film, and the infrared absorbing substance is represented by the following general formula (I).

【0008】[0008]

【化2】 [Chemical 2]

【0009】(式中、MはNi,Cu,Zn又はCo原
子を表わし、環A,B及びCはそれぞれ置換基を有して
いても良く、R1 及びR2 は、置換されていても良いア
ルキル基,又は置換されていても良いアルケニル基を表
わし、Z- は陰イオンを表わし、nは2又は3を表わ
す。)で示される含金属インドアニリン系化合物である
事を特徴とするものである。
(In the formula, M represents a Ni, Cu, Zn or Co atom, each of the rings A, B and C may have a substituent, and R 1 and R 2 may be substituted. Which represents a good alkyl group or an optionally substituted alkenyl group, Z represents an anion, and n represents 2 or 3), and is a metal-containing indoaniline compound. Is.

【0010】以下本発明の内容について詳しく説明す
る。先ず一般式(I)で表わされる赤外線吸収剤につい
て説明する。前記一般式(I)で表わされる赤外線吸収
剤の具体的な物としては、表1に示されるものが挙げら
れるが、これらの物は公知の物質であり特開昭63−2
27569,特開平1−254772などに記載されて
いる。
The contents of the present invention will be described in detail below. First, the infrared absorbent represented by the general formula (I) will be described. Specific examples of the infrared absorbing agent represented by the general formula (I) include those shown in Table 1, and these are known substances and are known to JP-A-63-2.
27569, JP-A-1-254772, and the like.

【0011】これらの化合物は650〜850nmの波
長帯域に極大波長の分子吸光係数が105 cm-1mol
-1以上の大きな吸収帯を有するため、赤外線レーザー光
の吸収効率が良好で又、吸収光の熱変換効率も良好であ
ることが知られていた。ところで、本発明者らがこれら
の化合物を該記録用シートの赤外線吸収剤として採用し
てみると、感熱転写記録用シートに用いる溶剤に対する
溶解度が大きいため塗工液が調製しやすく、特に色素に
対する悪影響がなく、塗工液、転写シートの保存安定性
も良好であり、更に色素に比べ熱転写性が非常に小さ
く、高い熱エネルギーを印加する高速記録に於ても、そ
れ自身受像紙に転写される事がなく記録画質を劣化させ
る事もないことを見出して本発明に至った。
These compounds have a molecular absorption coefficient of 10 5 cm -1 mol at the maximum wavelength in the wavelength band of 650 to 850 nm.
Since it has a large absorption band of -1 or more, it has been known that the absorption efficiency of infrared laser light is good and the heat conversion efficiency of absorbed light is also good. By the way, when the inventors of the present invention adopted these compounds as an infrared absorbing agent for the recording sheet, the coating liquid was easy to prepare due to their large solubility in the solvent used for the thermal transfer recording sheet, and especially for dyes. There is no adverse effect, the storage stability of the coating liquid and transfer sheet is good, and the thermal transfer property is very small compared to dyes, and it is transferred to the image receiving paper itself even in high-speed recording where high thermal energy is applied. The present invention has been completed by finding out that the image quality does not deteriorate and the recording image quality does not deteriorate.

【0012】例示化合物 但し、式(I)において、環A,B及びCにおける置換
基の位置を下記の様に定義する。
Exemplified compounds However, in formula (I), the positions of the substituents on rings A, B and C are defined as follows.

【0013】[0013]

【化3】 [Chemical 3]

【0014】[0014]

【表1】 [Table 1]

【0015】[0015]

【表2】 [Table 2]

【0016】[0016]

【表3】 [Table 3]

【0017】次に本発明の転写シートについて説明す
る。本発明の転写シートに於て、上記の赤外線吸収物質
を含む層はベースフィルムのいずれの位置に形成されて
も良いが、熱転写性の色素を含む色材層と同じ側に形成
されるのが有利であり、色材層中に色素と混合して用い
るのが更に有利である。
Next, the transfer sheet of the present invention will be described. In the transfer sheet of the present invention, the layer containing the infrared absorbing substance may be formed at any position of the base film, but it is formed on the same side as the color material layer containing the heat transferable dye. It is advantageous, and it is more advantageous to use it by mixing it with a dye in the color material layer.

【0018】赤外線吸収物質を色材層中に含んだ色材層
を形成する場合、赤外線吸収物質を色素及び結着剤とと
もに媒体中に溶解あるいは微粒子状に分散させる事によ
りインクを調製し、該インクをベースフィルムに塗布,
乾燥する事により実施する事ができる。インクの調製の
ための結着剤としては、セルロース系,アクリル酸系,
澱粉系,エポキシ系などの水溶性樹脂及びアクリル樹
脂,メタクリル樹脂,ポリスチレン,ポリカーボネー
ト,ポリスルホン,ポリエーテルスルホン,ポリビニル
ブチラール,エチルセルロース,アセチルセルロース,
ポリエステル,AS樹脂,フェノキシ樹脂などの有機溶
剤に可溶性の樹脂を挙げる事ができる。
In the case of forming a coloring material layer containing an infrared absorbing material in the coloring material layer, an ink is prepared by dissolving the infrared absorbing material together with a dye and a binder in a medium or dispersing it in the form of fine particles. Apply ink to the base film,
It can be carried out by drying. Binders for preparing ink include cellulose-based, acrylic acid-based,
Starch-based and epoxy-based water-soluble resins and acrylic resins, methacrylic resins, polystyrene, polycarbonate, polysulfones, polyether sulfones, polyvinyl butyral, ethyl cellulose, acetyl cellulose,
Examples include resins soluble in organic solvents such as polyester, AS resin, and phenoxy resin.

【0019】インク調製のための媒体としては水の他
に、メチルアルコール,エチルアルコール,イソプロピ
ルアルコール,イソブチルアルコールなどのアルコール
類,メチルセロソルブ,エチルセロソルブなどのセロソ
ルブ類,トルエン,キシレン,クロロベンゼンなどの芳
香族類,酢酸エチル,酢酸ブチルなどのエステル類,ア
セトン,メチルエチルケトン,メチルイソブチルケト
ン,シクロヘキサノンなどのケトン類,塩化メチレン,
クロロホルム,トリクロロエチレンなどの塩素系溶剤,
テトラヒドロフラン,ジオキサンなどのエーテル類,
N,N−ジメチルホルムアミド,N−メチルピロリドン
などの有機溶剤を挙げる事ができる。
As a medium for preparing the ink, in addition to water, alcohols such as methyl alcohol, ethyl alcohol, isopropyl alcohol and isobutyl alcohol, cellosolves such as methyl cellosolve and ethyl cellosolve, and aromas such as toluene, xylene and chlorobenzene. Group, esters such as ethyl acetate and butyl acetate, acetone, methyl ethyl ketone, methyl isobutyl ketone, ketones such as cyclohexanone, methylene chloride,
Chlorine-based solvents such as chloroform and trichlorethylene,
Ethers such as tetrahydrofuran and dioxane,
Examples thereof include organic solvents such as N, N-dimethylformamide and N-methylpyrrolidone.

【0020】熱転写性の色素に関しては、熱の作用によ
り受容層に転写可能な物ならばいずれの物でも良く、従
来のサーマルヘッドでの感熱転写シート用に提案されて
いるアゾ系色素,アントラキノン系色素,アゾメチン系
色素,メチン系色素,インドアニリン系色素,キノフタ
ロン系色素などを使用する事ができる。赤外線吸収剤,
色素及び結着剤の使用量としては、赤外線吸収剤は色素
に対して、1〜200重量%,好ましくは、10〜10
0重量%,色素は結着剤に対して、10〜500重量
%,好ましくは、50〜200重量%が適当である。
The heat transferable dye may be any one as long as it can be transferred to the receiving layer by the action of heat, and azo dyes and anthraquinone dyes which have been proposed for heat transfer sheets for conventional thermal heads. Dyes, azomethine dyes, methine dyes, indoaniline dyes, quinophthalone dyes, etc. can be used. Infrared absorber,
The amount of the dye and the binder used is 1 to 200% by weight, preferably 10 to 10% by weight of the infrared absorber with respect to the dye.
0% by weight, the amount of the dye is 10 to 500% by weight, preferably 50 to 200% by weight, based on the binder.

【0021】上記のインク中には上記の成分の他に必要
に応じて有機,無機の非昇華性微粒子,分散剤,帯電防
止剤,消泡剤,酸化防止剤,粘度調整剤,離型剤などを
添加する事ができる。色材層の厚さは0.1〜10μm
の範囲が適当であり、好ましくは0.5〜5μmであ
る。
In the above ink, in addition to the above components, if necessary, organic or inorganic non-sublimable fine particles, dispersant, antistatic agent, defoaming agent, antioxidant, viscosity modifier, release agent Etc. can be added. The thickness of the color material layer is 0.1 to 10 μm
Is suitable, and preferably 0.5 to 5 μm.

【0022】転写シートのベースフィルムとしては、ポ
リエステル,ポリカーボネート,ポリアミド,ポリイミ
ド,ポリアラミドのような耐熱性の良好な透明プラスチ
ックのフィルムが適しているが、それらの厚さとしては
3〜200μmの範囲を挙げる事ができる。上記のベー
スフィルムのうちポリエチレンテレフタレートフィルム
が機械的強度,耐溶剤性,経済性などを考慮すると特に
有利である。
As the base film of the transfer sheet, a film of transparent plastic having good heat resistance such as polyester, polycarbonate, polyamide, polyimide, polyaramid is suitable, and the thickness thereof is in the range of 3 to 200 μm. I can name it. Of the above base films, the polyethylene terephthalate film is particularly advantageous in consideration of mechanical strength, solvent resistance, economy and the like.

【0023】本発明の転写シートは上記の色材層の上
に、更に必要に応じて色素透過性の保護層を形成しても
良い。インクをベースフィルムに塗布する方法として
は、グラビアコーター,リバースロールコーター,ロッ
ドコーター,エアドクタコーターなどを使用して実施す
る事ができる。
The transfer sheet of the present invention may further have a dye-permeable protective layer formed on the above color material layer, if necessary. As a method for applying the ink to the base film, a gravure coater, a reverse roll coater, a rod coater, an air doctor coater, or the like can be used.

【0024】[0024]

【実施例】以下実施例により本発明を具体的に説明する
が、かかる実施例は本発明を限定するものではない。
The present invention will be described in detail with reference to the following examples, but the examples do not limit the present invention.

【0025】[0025]

【表4】実施例1 a)インクの調製 赤外線吸収剤 表1のNo30の化合物 2g 色素 1,1,2−トリシアノ−2−(p−エチルブチル アミノフェニル)エチレン 8g 酢酸セルロース 10g (製品名:L−30;ダイセル化学株式会社製品) メチルエチルケトン 80g ──────────────────────────────────── 合計 100gTable 1 Example 1 a) Preparation of ink Infrared absorber Compound No. 30 in Table 1 2 g Dye 1,1,2-tricyano-2- (p-ethylbutylaminophenyl) ethylene 8 g Cellulose acetate 10 g (Product name: L -30; Daicel Chemical Co., Ltd. product) Methyl ethyl ketone 80g ───────────────────────────────────── Total 100g

【0026】上記組成の混合物をペイントコンディショ
ナーで10分間処理し、インクの調製を行った。
An ink was prepared by treating the mixture having the above composition with a paint conditioner for 10 minutes.

【0027】b)転写シートの作製 上記のインクをワイヤバーを用いてポリエチレンテレフ
タレートフィルム(6μm厚)上に塗布,乾燥し(乾燥
膜厚約1μm)転写シートを得た。
B) Preparation of Transfer Sheet The above ink was applied on a polyethylene terephthalate film (6 μm thick) using a wire bar and dried (dry film thickness of about 1 μm) to obtain a transfer sheet.

【0028】c)受像体の作製 塩酢ビ樹脂(製品名:VYHD;ユニオンカーバイド製
品)10部,アミノ変性シリコーン(製品名:KF−3
93;信越化学工業株式会社製品)0.5部,メチルエ
チルケトン15部,キシレン15部からなる液を合成紙
(製品名:ユポFPG150;王子油化株式会社製品)
にワイヤーバーで塗布,乾燥し(乾燥膜厚約5μm),
更にオーブン中で80℃で30分間処理する事により作
製した。
C) Preparation of image receptor 10 parts of vinyl chloride / vinyl chloride resin (product name: VYHD; Union Carbide product), amino-modified silicone (product name: KF-3)
93; product of Shin-Etsu Chemical Co., Ltd.) 0.5 part, 15 parts of methyl ethyl ketone, 15 parts of xylene synthetic paper (product name: YUPO FPG150; product of Oji Yuka Co., Ltd.)
Apply with a wire bar and dry (dry film thickness about 5μm),
Further, it was produced by treating in an oven at 80 ° C. for 30 minutes.

【0029】d)転写記録 上記転写シートのインク塗布面が受像体の受容層面と接
する様に重ね、直径250mmのドラムに受像体がドラ
ムに接する様に巻きつけ(ドラムの内側から真空で吸引
し、更に、転写シートの上に25μm厚のポリエチレン
テレフタレートの透明カバーフィルムを貼りつけ転写シ
ートと受像体が良く密着するようにした)、ドラムを回
転させながら、カバーフィルムの上から発信波長830
nmの半導体レーザー光を連続的に照射しながら、以下
の条件で転写記録を実施した。
D) Transfer recording The transfer sheet is superposed so that the ink-coated surface of the transfer sheet is in contact with the surface of the image-receiving layer of the image-receiving member, and is wound on a drum having a diameter of 250 mm so that the image-receiving member is in contact with the drum (vacuum is sucked from the inside of the drum. Furthermore, a transparent cover film of polyethylene terephthalate having a thickness of 25 μm was further adhered onto the transfer sheet so that the transfer sheet and the image receiver were in close contact with each other.) While the drum was rotated, the transmission wavelength of 830
Transfer recording was performed under the following conditions while continuously irradiating a semiconductor laser beam of nm.

【0030】[0030]

【表5】使用機器:松下電器産業(株)製、型番号LN
98100PR ドラム回転速度:500rpm レーザー光出力:80mW レーザー光スポット径:4μm 記録ライン密度:100本/mm
[Table 5] Equipment used: manufactured by Matsushita Electric Industrial Co., Ltd., model number LN
98100PR Drum rotation speed: 500 rpm Laser light output: 80 mW Laser light spot diameter: 4 μm Recording line density: 100 lines / mm

【0031】上記の条件での転写記録により均一で鮮明
なマゼンタ色の記録物を得た。記録物の色濃度をマクベ
ス社製デンシトメーターTR−927型を用いて測定し
た結果1.05であった。
By transfer recording under the above conditions, a uniform and clear magenta-colored recorded matter was obtained. The color density of the recorded matter was measured using a densitometer TR-927 manufactured by Macbeth Co., and was 1.05.

【0032】実施例2 インクの調製に於て実施例1の色素の代りに、色素1,
1−ジシアノ−2−(p−ジエチルアミノ−o−メチル
フェニル)エチレン8gを用いたほかは実施例1と同様
の方法によりインクの調製,転写シートの作製,受像体
の作製及び転写記録を行ない色濃度1.10の均一で鮮
明なイエロー色の記録物を得た。
Example 2 In preparation of the ink, instead of the dye of Example 1, dye 1,
Ink was prepared, a transfer sheet was prepared, an image receptor was prepared and transfer recording was carried out in the same manner as in Example 1 except that 8 g of 1-dicyano-2- (p-diethylamino-o-methylphenyl) ethylene was used. A uniform and clear yellow-colored recording material having a density of 1.10 was obtained.

【0033】実施例3 インクの調製に於て実施例1の色素の代りに、色素o−
アセトアミド−N−(p−ジエチルアミノ−o−メチル
フェニル)p−キノンイミン〔アセトアミドはキノンの
酸素原子に結合している炭素原子からみてオルソ位置〕
8gを用いたほかは実施例1と同様の方法によりインク
の調製,転写シートの作製,受像体の作製及び転写記録
を行ない色濃度1.00の均一で鮮明なシアン色の記録
物を得た。
Example 3 Instead of the dye of Example 1 in the preparation of the ink, dye o-
Acetamide-N- (p-diethylamino-o-methylphenyl) p-quinoneimine [acetamide is in the ortho position with respect to the carbon atom bonded to the oxygen atom of quinone]
Ink preparation, transfer sheet preparation, image receptor preparation and transfer recording were carried out in the same manner as in Example 1 except that 8 g was used to obtain a uniform and clear cyan recording material having a color density of 1.00. .

【0034】実施例4 インクの調製に於て実施例1の成分の他に、更に真球状
シリコン樹脂粒子(平均径2μm)を0.2g添加しイ
ンクを調製し、転写シートの作製,受像体の作製及び転
写記録は実施例1と同様の方法で行い、色濃度1.00
の均一で鮮明なマゼンタ色の記録物を得た。
Example 4 In the preparation of the ink, 0.2 g of true spherical silicon resin particles (average diameter 2 μm) was added to the components of Example 1 to prepare an ink, and a transfer sheet was prepared and an image receptor was prepared. And transfer recording were performed in the same manner as in Example 1, and the color density was 1.00.
A uniform and vivid magenta-colored recorded matter was obtained.

【0035】実施例5 実施例1で作製した転写シートの色材層の上に、更にポ
リビニルアルコールの水溶液を塗工し約0.1μmの保
護層を形成し転写シートを作製した。この転写シートを
用いて、転写記録を実施例1と同様の方法で行い、色濃
度0.95の均一で鮮明なマゼンタ色の記録物を得た。
Example 5 A transfer sheet was prepared by further coating an aqueous solution of polyvinyl alcohol on the color material layer of the transfer sheet prepared in Example 1 to form a protective layer of about 0.1 μm. Using this transfer sheet, transfer recording was carried out in the same manner as in Example 1 to obtain a uniform and vivid magenta color recorded product having a color density of 0.95.

【0036】実施例6 インクの調製に於て実施例1の赤外線吸収剤の代りに、
表2に示す赤外線吸収剤2gを用いたほかは実施例1と
同様の方法によりインクの調製,転写シートの作製,受
像体の作製及び転写記録を行ない表2に示す色濃度の鮮
明なマゼンタ色の記録物を得た。
Example 6 In place of the infrared absorber of Example 1 in the preparation of the ink,
Ink preparation, transfer sheet preparation, image receptor preparation and transfer recording were carried out in the same manner as in Example 1 except that 2 g of the infrared absorbent shown in Table 2 was used. I got a record.

【0037】比較例 インクの調製に於て実施例1の赤外線吸収剤の代りに、
表2に示す赤外線吸収剤2gを用いたほかは実施例1と
同様の方法によりインクの調製,転写シートの作製,受
像体の作製及び転写記録を行ない表2に示す結果を得
た。
Comparative Example In place of the infrared absorber of Example 1 in the preparation of the ink,
Ink preparation, transfer sheet preparation, image receptor preparation and transfer recording were carried out in the same manner as in Example 1 except that 2 g of the infrared absorbent shown in Table 2 was used, and the results shown in Table 2 were obtained.

【0038】[0038]

【表6】 ※ Ni−化合物とは下記構造のもの。[Table 6] * Ni-compound has the following structure.

【0039】[0039]

【化4】 [Chemical 4]

【0040】[0040]

【発明の作用及び効果】本発明の感熱転写シートを用い
た場合、赤外線レーザーを加熱手段とし、高い濃度の鮮
明な記録物を得る事ができる。
When the heat-sensitive transfer sheet of the present invention is used, an infrared laser can be used as a heating means to obtain a clear recorded matter having a high density.

───────────────────────────────────────────────────── フロントページの続き (72)発明者 前田 修一 神奈川県横浜市緑区鴨志田町1000番地 三 菱化成株式会社総合研究所内 ─────────────────────────────────────────────────── ─── Continuation of the front page (72) Inventor Shuichi Maeda Sanboshi Kasei Co., Ltd. Research Institute, 1000, Kamoshida-cho, Midori-ku, Yokohama-shi, Kanagawa

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 ベースフィルム上に熱移行性色素及び赤
外線吸収物質を含む層を有し、赤外線を加熱手段とする
感熱転写記録に用いるシートであって、該赤外線吸収物
質が下記一般式(I) 【化1】 (式中、MはNi,Cu,Zn又はCo原子を表わし、
環A,B及びCはそれぞれ置換基を有していても良く、
1 及びR2 は、置換されていても良いアルキル基,又
は置換されていても良いアルケニル基を表わし、Z-
陰イオンを表わし、nは2又は3を表わす。)で示され
る含金属インドアニリン系化合物である事を特徴とする
赤外線加熱型感熱転写記録用シート。
1. A sheet used for heat-sensitive transfer recording having a layer containing a heat transferable dye and an infrared absorbing substance on a base film, wherein the infrared absorbing substance has the following general formula (I): ) [Chemical 1] (In the formula, M represents a Ni, Cu, Zn or Co atom,
Rings A, B and C may each have a substituent,
R 1 and R 2 represent an optionally substituted alkyl group or an optionally substituted alkenyl group, Z represents an anion, and n represents 2 or 3. ) An infrared heating type heat-sensitive transfer recording sheet characterized by being a metal-containing indoaniline compound represented by
JP3339071A 1991-12-20 1991-12-20 Infrared heating type thermal transfer recording sheet Pending JPH05169840A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3339071A JPH05169840A (en) 1991-12-20 1991-12-20 Infrared heating type thermal transfer recording sheet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3339071A JPH05169840A (en) 1991-12-20 1991-12-20 Infrared heating type thermal transfer recording sheet

Publications (1)

Publication Number Publication Date
JPH05169840A true JPH05169840A (en) 1993-07-09

Family

ID=18323986

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3339071A Pending JPH05169840A (en) 1991-12-20 1991-12-20 Infrared heating type thermal transfer recording sheet

Country Status (1)

Country Link
JP (1) JPH05169840A (en)

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