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    • 51. 发明公开
    • Spectral sensitization of amorphous silicon photoconductive elements
    • Spektrale SensibilisierungphotoleitfähigerElemente aus amorphem Silizium。
    • EP0276494A2
    • 1988-08-03
    • EP87119410.6
    • 1987-12-31
    • EASTMAN KODAK COMPANY (a New Jersey corporation)
    • Borsenberger, Paul M.
    • G03G5/082G03G5/14
    • G03G5/0436
    • Multi-layer photoconductive elements comprising one or more layers of hydrogenated amorphous silicon are provided with sensitizing and supersensitizing layers which function to alter the spectral sensitivity of the element and thereby enhance its usefulness in such applications as photovoltaic devices, thin film electronic devices, and electrophotographic photoreceptors. The sensitizing layer contains a phthalocyanine which serves as a spectral sensitizing agent and the supersensitizing layer contains an arylamine which serves as a chemical sensitizing agent. The sensitizing and supersensitizing layers serve by their conjoint action to inject charge into the hydrogenated amorphous silicon layer in response to photogeneration within the sensitizing layer that is activated by radiation to which the hydrogenated amorphous silicon layer exhibits a lower degree of sensitivity.
    • 包含一层或多层氢化非晶硅的多层感光元件设置有敏化和超敏化层,其功能是改变元件的光谱灵敏度,从而增强其在诸如光伏器件,薄膜电子器件和电子照相的应用中的有用性 光感受器。 敏化层含有作为光谱增感剂的酞菁,超敏化层含有作为化学增感剂的芳基胺。 敏化和超敏化层通过它们的联合作用发挥作用,以响应于通过被氢化非晶硅层表现出较低灵敏度的辐射激活的敏化层内的光生成而向氢化非晶硅层注入电荷。
    • 59. 发明公开
    • Layered photoresponsive imaging device
    • Schichtförmigephotoempfindliche Abbildungsvorrichtung。
    • EP0120581A2
    • 1984-10-03
    • EP84300981.2
    • 1984-02-15
    • XEROX CORPORATION
    • Teuscher, Leon A.Morrison, Ian D.
    • G03G5/14
    • G03G5/0436G03G5/047
    • A layered photoresponsive device comprising in the order stated a substrate (10); a transmissive semi-conductive layer (12) selected from the group consisting of indium-tin oxide, cadmium tin oxide, tin oxide, titanium oxides, titanium nitrides, titanium silicides, and mixtures thereof; a photogenerating layer (14) comprising an inorganic photoconductive composition or an organic photoconductive composition, dispersed in a resinous binder; and a charge carrier transport layer (16) comprising a combination of a resinous binder having dispersed therein small molecules of an electrically active material, the combination of which is substantially non-absorbing to visible light and allows the injection of photogenerating holes from the charge photogenerating layer in contact therewith, the electrically active material being of the following formula:
      wherein X is selected from the group consisting of ortho CH 3 , meta CH 3 , para CH 3 , ortho C1, and para C1, as well as the incorporation of such devices in electrostatographic imaging systems.
    • 层状光响应装置,按顺序包括衬底(10); 选自氧化铟锡,氧化锡镉,氧化钛,氧化钛,氮化钛,硅化钛及其混合物的透射半导电层(12); 包含分散在树脂粘合剂中的无机光电导组合物或有机光电导组合物的光生成层(14) 和电荷载流子输送层(16),其包含分散有电活性材料的小分子的树脂粘合剂的组合,其组合基本上不吸收可见光,并允许从电荷光生产注入光生孔 层与其接触,所述电活性材料具有下式:... ...其中X选自邻CH3,间CH3,对CH3,邻C1和对C1,以及掺入 的这种装置在静电图像成像系统中。
    • 60. 发明公开
    • Layered photoresponsive device
    • Lichtreaktives Schichtmaterial。
    • EP0102850A1
    • 1984-03-14
    • EP83305203.8
    • 1983-09-07
    • XEROX CORPORATION
    • Horgan, Anthony M.
    • G03G5/00G03G5/04G03G5/10C09B57/00
    • G03G5/14G03G5/0436
    • A photoresponsive device comprises s substrate (3), a hole blocking layer (15), an optional adhesive layer (6), an inorganic photogenerating layer (7), an organic photoconductive layer (9) sensitive to infra-red radiation, and a top coating (11) of a hole transport layer. More specifically, the present invention is directed to an improved photoresponsive device comprised in the order stated of the following layers: a conductive substrate (3), a metal oxide hole blocking layer (5), an adhesive layer (6), an inorganic photogenerating layer (7), a photoconductive composition (9) capable of enhancing or reducing the intrinsic properties of the photogenerating layer, which composition is selected from the group consisting or organic photoconductive compositions, charge transfer complex compositions, sensitizers, or mixtures thereof, and a hole transport (11). In an alternative embodiment, the positions of the photogenerating layer (7) and the photoconductive layer (9) are reversed.
    • 光响应装置包括:基板(3),空穴阻挡层(15),任选的粘合层(6),无机光生成层(7),对红外线辐射敏感的有机光电导层(9) 空穴传输层的顶部涂层(11)。 更具体地,本发明涉及一种改进的光响应器件,其按以下层次的顺序包括:导电衬底(3),金属氧化物空穴阻挡层(5),粘合剂层(6),无机光生产 层(7),能够增强或降低光生代层的固有性质的光导组合物(9),该组合物选自有机光电导组合物,电荷转移络合物组合物,敏化剂或其混合物,以及 空运(11)。 在替代实施例中,光产生层(7)和光电导层(9)的位置相反。