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    • 2. 发明授权
    • Information recording medium
    • 信息记录介质
    • US5200283A
    • 1993-04-06
    • US828663
    • 1992-02-06
    • Atsushi NakanoDai ImanishiTadayuki ShimadaShigeo Shimizu
    • Atsushi NakanoDai ImanishiTadayuki ShimadaShigeo Shimizu
    • G02F1/1333G02F1/1334G02F1/135G11B7/0045G11B7/005
    • G11B7/005G02F1/1354G11B7/0045G02F1/1334Y10S430/146
    • An information recording medium includes a first transparent electrode, and a carrier transport layer formed on the first transparent electrode for generating an electric current on the basis of fed carriers. A carrier generation layer formed on the carrier transport layer serves to generate carriers corresponding to a distribution of an intensity of incident information-writing light containing information, and serves to feed the generated carriers to the carrier transport layer. An electric power supply electrically connected to the first transparent electrode serves to generate an electric field corresponding to the distribution of the intensity of the incident information-writing light in cooperation with the carrier transport layer and the carrier generation layer. A photo-modulation layer formed on the carrier generation layer serves to record the information in the incident information-writing light in response to an application of the electric field generated by the electric power supply, and serves to modulate applied information-reading light in accordance with the recorded information. The photo-modulation layer is made of a complex member of high-molecule material and liquid crystal. A second transparent electrode is formed on the photo-modulation layer, and is electrically connected to the electric power supply. The carrier generation layer is made of inorganic material. The carrier generation layer may be made of organic material. In this case, a separating layer is provided between the photo-modulation layer and the carrier generation layer.
    • 信息记录介质包括第一透明电极和形成在第一透明电极上的载流子传输层,用于基于馈送载体产生电流。 形成在载体传输层上的载波产生层用于产生对应于包含信息的入射信息写入光强度的分布的载​​波,并且用于将产生的载波馈送到载波传输层。 电连接到第一透明电极的电源用于与载流子传输层和载体生成层协作,产生与入射信息写入光的强度分布相对应的电场。 形成在载体产生层上的光调制层用于响应于由电源产生的电场的应用而在入射信息写入光中记录信息,并且用于调制应用的信息读取光 与记录的信息。 光调制层由高分子材料和液晶的复合构件制成。 第二透明电极形成在光电转换层上,并与电源电连接。 载体生成层由无机材料制成。 载体产生层可以由有机材料制成。 在这种情况下,在光调制层和载体生成层之间设置分离层。
    • 5. 发明授权
    • Charge image recording medium
    • 充电图像记录介质
    • US5304438A
    • 1994-04-19
    • US915388
    • 1992-07-20
    • Toshio KonnoTadayuki ShimadaAtsushi Nakano
    • Toshio KonnoTadayuki ShimadaAtsushi Nakano
    • G03G5/00G03G5/02C09K19/00
    • G03G5/02C09K19/544G03G5/00
    • A charge image recording medium (RM) comprising a lamination of an electrode (E) and at least one of a light-modulation material layer (PMLQ) and an insulating polymer film or dielectric layer (IL), wherein said light-modulation material layer (PMLQ) comprises a polymer-dispersed liquid crystals film comprising a liquid crystal dispersed in a polymer. The insulating polymer film (IL) may be provided thereon with a thin film (CL) of a fatty acid or a thin film (CL) of a metal salt of a fatty acid.The light-modulation material layer (PMLQ) comprising a polymer-dispersed liquid crystals film comprising a liquid crystal dispersed in a polymer may also be provided thereon with a thin film (CL) of a fatty acid or a thin film (CL) of a metal salt of a fatty acid.
    • 一种电荷图像记录介质(RM),包括电极(E)和光调制材料层(PMLQ)和绝缘聚合物膜或电介质层(IL)中的至少一个的叠层,其中所述光调制材料层 (PMLQ)包括分散在聚合物中的液晶的聚合物分散液晶膜。 绝缘聚合物膜(IL)可以在其上设置脂肪酸的薄膜(CL)或脂肪酸的金属盐的薄膜(CL)。 包含分散在聚合物中的液晶的聚合物分散液晶薄膜的光调制材料层(PMLQ)也可以在其上设置脂肪酸或薄膜(CL)的薄膜(CL) 脂肪酸的金属盐。