发明名称 Electrophotographic photosensitive member, process cartridge, and electrophotographic apparatus
摘要 An electrophotographic photosensitive member has a laminated body and a hole transporting layer formed on the laminated body, wherein the laminated body has a support, an electron transporting layer and a charge generating layer in this order, and satisfies the following expressions (2) and (4): |Vl2−Vl1|≦0.35  (2)0.10≦|(Vd2−Vl3)/Vd2|≦0.20  (4).
申请公布号 US9063505(B2) 申请公布日期 2015.06.23
申请号 US201313930341 申请日期 2013.06.28
申请人 CANON KABUSHIKI KAISHA 发明人 Sekiya Michiyo;Sekido Kunihiko;Okuda Atsushi;Tomono Hiroyuki;Nakamura Nobuhiro;Ito Yota;Kaku Kenichi;Ishiduka Yuka
分类号 G03G5/047;G03G15/00;G03G5/06;G03G5/05;G03G5/07;G03G5/14 主分类号 G03G5/047
代理机构 Fitzpatrick, Cella, Harper and Scinto 代理人 Fitzpatrick, Cella, Harper and Scinto
主权项 1. An electrophotographic photosensitive member comprising: a laminated body, and a hole transporting layer formed on the laminated body, wherein the laminated body comprises: a support, an electron transporting layer having a thickness of d1 [μm], formed on the support, and a charge generating layer having a thickness of d2 [μm], formed on the electron transporting layer, wherein the electron transporting layer comprises a polymer obtained by polymerizing a composition comprising: an electron transporting substance having a polymerizable functional group, a crosslinking agent, and a thermoplastic resin having a polymerizable funcational group, wherein the polymerizable functional group is a hydroxy group, a thiol group, an amino group, a carboxyl group, or a methoxy group, wherein the content of the electron transporting substance in the composition is 30% by mass or more and 70% by mass or less with respect to the total mass of the composition, and wherein the laminated body satisfies the following expressions (2) and (4): |Vl2−Vl1|≦0.35  (2),and 0.10≦|(Vd2−Vl3)/Vd2|≦0.20  (4), where, in the expressions (2) and (4), Vl1 represents a potential of a surface of the charge generating layer when charging the surface of the charge generating layer so that the surface has a potential of Vd1 [V] represented by the following expression (1): Vd1=−50×(d1+d2)  (1),and irradiating the surface of the charge generating layer having a potential of Vd1 with a light, followed by an interval of 0.18 seconds after the irradiation, wherein the intensity of the light is adjusted so that the potential of the surface decays by 20% with respect to Vd1 [V] when irradiating the surface of the charge generation layer, followed by an interval of 0.20 seconds after the irradiation, Vl2 represents a potential of a surface of the charge generating layer when charging the surface of the charge generating layer so that a potential of the surface is the Vd1 [V], and irradiating the surface of the charge generating layer having a potential of Vd1 with the light, followed by an interval of 0.22 seconds after the irradiation, and Vl3 represents a potential of a surface of the charge generating layer when charging the surface of the charge generating layer so that the surface has a potential of Vd2 [V] represented by the following expression (3): Vd2=−30×(d1+d2)  (3),and irradiating the surface of the charge generating layer having a potential of Vd2 with the light, followed by an interval of 0.20 seconds after the irradiation.
地址 Tokyo JP