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    • 42. 发明授权
    • Method for processing color photographic light-sensitive material
    • 彩色照相感光材料的处理方法
    • US4621047A
    • 1986-11-04
    • US736625
    • 1985-05-21
    • Shinzo KishimotoAkira AbeShigeru Ohno
    • Shinzo KishimotoAkira AbeShigeru Ohno
    • G03C7/34G03C7/42G03C7/32G03C5/44
    • G03C7/42G03C7/346
    • A method for processing a color photographic light-sensitive material comprising subjecting an imagewise exposed silver halide color photographic light-sensitive material to color development processing, then to processing with a bleaching solution and thereafter to separately, fixing processing wherein the silver halide color photographic light-sensitive material contains a cyan dye forming coupler represented by the general formula (I-a) or (I-b) described below, the bleaching solution contains a compound represented by the general formula (II-a) or (II-b) described below and the processing time for the bleaching solution is substantially not more than 2 minutes and 30 seconds, ##STR1## wherein R.sup.1, R.sup.2 and R.sup.4 each represents a substituted or unsubstituted aliphatic group, a substituted or unsubstituted aryl group or a substituted or unsubstituted heterocyclic group; R.sup.3 and R.sup.6 each represents a hydrogen atom, a halogen atom, a substituted or unsubstituted aliphatic group, a substituted or unsubstituted aryl group or an acylamino group, or R.sup.3 represents a non-metallic atomic group necessary to form a nitrogen-containing 5-membered or 6-membered ring together with R.sup.2, R.sup.5 presents a substituted or unsubstituted alkyl group; Z.sup.1 and Z.sup.2 each represents a hydrogen atom or a group capable of being released upon the oxidative coupling reaction with a developing agent; and n represents 0 or 1, ##STR2## wherein R.sup.7, R.sup.8, R.sup.9 and R.sup.10, which may be the same or different, each represents a hydrogen atom, a substituted or unsubstituted lower alkyl group or an acyl group, or R.sup.7, R.sup.8, R.sup.9 and R.sup.10 may connect to each other to form a ring; and m and each represents an integer of 1 to 3.
    • 一种用于处理彩色照相感光材料的方法,包括对成像曝光的卤化银彩色照相感光材料进行着色显影处理,然后用漂白溶液处理,然后分别进行定影处理,其中卤化银彩色照相光 感光材料包含由下述通式(Ia)或(Ib)表示的青色染料形成成色剂,漂白溶液含有下述通式(II-a)或(II-b)表示的化合物和 漂白溶液的处理时间基本上不超过2分30秒,其中R 1,R 2和R 4各自表示取代或未取代的脂族基团,取代或未取代的芳基 或取代或未取代的杂环基; R 3和R 6各自表示氢原子,卤素原子,取代或未取代的脂族基团,取代或未取代的芳基或酰基氨基,或R 3表示形成含氮5元素所必需的非金属原子团 或6元环与R2一起,R5表示取代或未取代的烷基; Z1和Z2各自表示氢原子或能够与显影剂进行氧化偶联反应时释放的基团; (II-a)其中R 7,R 8,R 9和R 10可以相同或不同,表示氢原子,取代或未取代的 低级烷基或酰基,或者R 7,R 8,R 9和R 10可以彼此连接形成环; m,m表示1〜3的整数。
    • 43. 发明授权
    • Photoconductive member having a germanium silicon photoconductor
    • 具有锗硅感光体的感光体
    • US4609604A
    • 1986-09-02
    • US643441
    • 1984-08-23
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • G03G5/082H01L31/09G03G5/085
    • H01L31/095G03G5/08228
    • A photoconductive member comprises a substrate for photoconductive member and a light receiving layer provided on said substrate having a layer constitution in which a first layer region (G) comprising an amorphous material containing germanium atoms and a second layer region (S) exhibiting photoconductivity comprising an amorphous material containing silicon atoms are successively provided from the substrate side, said light receiving layer containing a substance for controlling conductivity (C) in a distributed state such that, in said light receiving layer, the maximum value of the content of said substance (C) in the layer thickness direction exists within said second layer region (S) or at the interface with said first layer region (G) and, in said second layer region (S), said substance (C) is distributed in greater amount on the side of said substrate.
    • 感光构件包括用于光导体的衬底和设置在所述衬底上的光接收层,其具有层结构,其中包含含有锗原子的非晶态材料的第一层区域(G)和显示光电导率的第二层区域(S) 含有硅原子的非晶质材料从衬底侧连续提供,所述光接收层含有分布状态下用于控制导电性(C)的物质,使得在所述光接收层中,所述物质的含量的最大值(C )存在于所述第二层区域(S)内或与所述第一层区域(G)的界面处,并且在所述第二层区域(S)中,所述物质(C)在 侧。
    • 46. 发明授权
    • Photoconductive member of amorphous germanium and silicon with carbon
    • 无定形锗和硅的导电构件
    • US4592981A
    • 1986-06-03
    • US649850
    • 1984-09-12
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • G03G5/082
    • G03G5/08242
    • A photoconductive member comprises a substrate for photoconductive member and a light receiving layer having photoconductivity comprising an amorphous material containing silicon atoms and germanium atoms, said light receiving layer containing carbon atoms and having a first layer region, a third layer region and a second layer region with the carbon atom content in the layer thickness direction of C(1), C(3) and C(2), respectively, in the order from the substrate side [with the proviso that when C(3) cannot solely be the maximum and either one of C(1) and C(2) is zero, the other two are not zero and not equal to each other, or when C(3) is zero, the other two are not zero, or when none of C(1), C(2) and C(3) is zero, the three of C(1), C(2) and C(3) cannot be equal at the same time and C(3) cannot solely be the maximum].
    • 感光构件包括用于光导体的衬底和具有光电导率的光接收层,该光接收层包含含有硅原子和锗原子的无定形材料,所述光接收层含有碳原子并具有第一层区,第三层区和第二层区 分别以C(1),C(3)和C(2)的层厚度方向的碳原子含量按衬底侧的顺序排列[条件是当C(3)不能仅为最大值时 并且C(1)和C(2)中的任一个为零,另外两个不为零并且不相等,或者当C(3)为零时,另外两个不为零,或者当C (1),C(2)和C(3)为零,C(1),C(2)和C(3)中的三个不能同时相等,C(3)不能仅仅是最大值 ]。
    • 47. 发明授权
    • Photoconductive member with amorphous germanium and silicon regions,
nitrogen and dopant
    • 具有无定形锗和硅区,氮和掺杂剂的光导体
    • US4579797A
    • 1986-04-01
    • US662977
    • 1984-10-19
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • Keishi SaitohYukihiko OhnukiShigeru Ohno
    • G03G5/082H01L31/09H01L31/20G03G5/08G03G5/085
    • G03G5/08228H01L31/095H01L31/202Y02E10/50Y02P70/521
    • A photoconductive member comprises a substrate for photoconductive member and a light receiving layer provided on said substrate having a layer constitution in which a first layer region (G) comprising an amorphous material containing germanium atoms and a second layer region (S) exhibiting photoconductivity comprising an amorphous material containing silicon atoms are successively provided from the substrate side, said light receiving layer containing nitrogen atoms together with a substance for controlling conductivity (C) in a distributed state such that, in said light receiving layer, the maximum value C(PN).sub.max of the content of said substance (C) in the layer thickness direction exists within said second layer region (S) or at the interface between said first and second layer region and, in said second layer region (S), said substance (C) is distributed in greater amount on the side of said substrate.
    • 感光构件包括用于光导体的衬底和设置在所述衬底上的光接收层,其具有层结构,其中包含含有锗原子的非晶态材料的第一层区域(G)和显示光电导率的第二层区域(S) 含有硅原子的无定形材料从衬底侧连续提供,所述光接收层与分布状态下用于控制导电性(C)的物质一起含有氮原子,使得在所述光接收层中,最大值C(PN) 所述物质(C)在层厚度方向上的含量的最大值存在于所述第二层区域(S)内或所述第一和第二层区域之间的界面处,并且在所述第二层区域(S)中,所述物质(C )在所述衬底的侧面上分布得更大。