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    • 4. 发明授权
    • Light receiving member having a divided-functionally structured light
receiving layer having CGL and CTL for use in electrophotography
    • 光接收元件具有分光功能结构的光接收层,具有用于电子照相术的CGL和CTL
    • US4954397A
    • 1990-09-04
    • US423680
    • 1989-10-18
    • Hiroshi AmadaTatsuyuki AoikeTakehito YoshinoRyuji Okamura
    • Hiroshi AmadaTatsuyuki AoikeTakehito YoshinoRyuji Okamura
    • G03G5/082
    • G03G5/08242G03G5/08228
    • An improved light receiving member for use in electrophotography having a light receiving layer provided with a charge carrier generation layer (hereinafter referred to as "CGL") and a charge carrier transport layer (hereinafter referred to as "CTL"), the CGL being formed of a non-single-crystal material composed substantially of silicon atom as the main constituent atom and at least one kind selected from hydrogen atom and halogen atom and the CTL being formed of a Non-Si(H,X) material containing carbon atom and a conductivity controlling element selected from the group consisting of boron, aluminum, gallium, indium and thallium belonging to group III of the Periodic Table or from the group consisting of phosphorus, arsenic, antimony and bismuth belonging to group V of the Periodic Table in an uneven state in the thicknesswise direction, and optionally at least one kind selected from oxygen atom and nitrogen atom in this order from the side of a substrate.The above light receiving member is that electrical, optical and photoconductive properties are always substantially stable scarcely depending on the working circumstances, that is excellent against optical fatigue, causes no degreadation upon repeating use and that is excellent in durability and moisture-proofness and exhibits no or scarce residual potential.
    • 一种用于电子照相的改进的光接收元件,具有设置有电荷载流子生成层(以下称为“CGL”)的光接收层和电荷载流子传输层(以下称为“CTL”),形成CGL 的基本上由硅原子构成的非单晶材料作为主要成分原子和选自氢原子和卤素原子中的至少一种,CTL由含有碳原子的非Si(H,X)材料形成,以及 选自属于周期表第III族的硼,铝,镓,铟和铊的导电性控制元素或属于元素周期表第Ⅴ族的磷,砷,锑和铋的导电性控制元素 厚度方向的不均匀状态,以及从基板侧依次从氧原子和氮原子中任意选择的至少一种。 上述受光部件是电光学和光电导性能几乎不依赖于工作环境而基本稳定,对光疲劳性能优异,在重复使用时不会发生脱光,耐久性和耐湿性优异,不会发生 或很少的残留潜力。