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    • 2. 发明授权
    • Electrophotographic photoreceptor
    • 电子照相感光体
    • US5324606A
    • 1994-06-28
    • US977633
    • 1992-11-17
    • Masahiko HodumiMasanori MuraseSadao OkanoKoji BandoTakahiro SuzukiSeiji Ashiya
    • Masahiko HodumiMasanori MuraseSadao OkanoKoji BandoTakahiro SuzukiSeiji Ashiya
    • G03G5/047G03G5/06
    • G03G5/047G03G5/0614
    • An electrophotographic photoreceptor comprising a conductive substrate having thereon a photosensitive layer as the uppermost layer, in which the photosensitive layer contains two charge transporting materials different in ionization potential, a charge transporting material having a higher ionization potential is present in the amount equimolar to or in an amount less than the equimolar amount to the other charge transporting material having a lower ionization potential. A laminate type electrophotographic photoreceptor comprising a conductive substrate having thereon a charge generating layer and a charge transporting layer, in which the charge generating layer comprises a binder resin and a charge generating material dispersed therein, the charge transporting layer comprises a binder resin and at least two charge transporting materials including a first charge transporting material and a second charge transporting material, the amount of the first charge transporting material is at least 60 wt % based on the total amount of the charge transporting materials, the difference between the highest ionization potential and the lowest ionization potential the charge transporting materials is not more than 0.4 eV, provided that (1) the ionization potentials of all the charge transporting materials are lower than the ionization potential of the charge generating material, or (2) the ionization potential of the first charge transporting material is lower than the ionization potential of the charge generating material, and the ionization potential of the second charge transporting material is higher than the ionization potential of the charge generating material by at least 0.2 eV.
    • 一种电子照相感光体,包括其上具有感光层作为最上层的导电基底,其中感光层包含两种电离电位不同的电荷输送材料,具有较高离子化电位的电荷输送材料以等摩尔于或相等的量存在 相对于具有较低电离电位的其他电荷输送材料的等摩尔量的量。 一种层叠型电子照相感光体,其特征在于,具有导电性基板,其上具有电荷产生层和电荷输送层,其中所述电荷产生层包含粘合剂树脂和分散在其中的电荷产生材料,所述电荷输送层至少包含粘合剂树脂 包括第一电荷输送材料和第二电荷输送材料的两种电荷输送材料,第一电荷输送材料的量相对于电荷输送材料的总量为至少60重量%,最高电离电位与 电荷输送材料的电离电位最低不超过0.4eV,条件是(1)所有电荷输送材料的电离电位低于电荷产生材料的电离电位,或(2) 第一电荷输送材料低于 电荷产生材料的电离电位和第二电荷输送材料的电离电位比电荷产生材料的电离电位高至少0.2eV。
    • 4. 发明授权
    • Method for preparing an electrophotographic photoreceptor
    • 电子照相感光体的制备方法
    • US5252422A
    • 1993-10-12
    • US829618
    • 1992-01-31
    • Sadao OkanoTakahiro SuzukiMasanori MuraseKoji BandoSeiji Ashiya
    • Sadao OkanoTakahiro SuzukiMasanori MuraseKoji BandoSeiji Ashiya
    • G03G5/14
    • G03G5/142
    • A novel method for preparing an electrophotographic photoreceptor is disclosed, which comprises laminating a charge generating layer and a charge transporting layer in this order on an electrically conductive substrate via an undercoating layer, wherein the coating solution for said undercoating layer contains an alkoxide coupling agent represented by formula (I), an aliphatic alcohol solvent containing at least the same number of carbon atoms as in the alkoxy group in said alkoxide coupling agent, and at least one compound selected from the group consisting of aromatic solvents, ethylene glycols and propylene glycols:X.sub.m --m--(OR.sub.1).sub.N (I)wherein R.sub.1 represents an alkyl group having 1 to 5 carbon atoms; M represents Si, Ti, Zr or Al; X represents an organic group; m represents an integer of 0, 1 or 2; and n represents an integer of 1 to 4, provided that when M is Si, Ti or Zr, n is an integer of 1 to 4 and m is an integer of (4-n) and when M is Al, n is an integer of 1 to 3 and m is an integer of (3-n).
    • 公开了一种用于制备电子照相感光体的新方法,其包括依次层叠电荷产生层和电荷输送层,其中所述底涂层的涂布溶液含有表示为烷氧基的偶联剂 通式(I)表示的烷氧基化合物中含有至少相同数目的碳原子的脂族醇溶剂和选自芳族溶剂,乙二醇和丙二醇中的至少一种化合物: Xm-m-(OR1)N(I)其中R1表示具有1至5个碳原子的烷基; M表示Si,Ti,Zr或Al; X表示有机基团; m表示0,1或2的整数; n表示1〜4的整数,条件是当M为Si,Ti或Zr时,n为1〜4的整数,m为(4-n)的整数,当M为Al时,n为整数 为1〜3,m为(3-n)的整数。