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    • 64. 发明授权
    • Nanostructure-based solid state charging device
    • 基于纳米结构的固态充电装置
    • US07398035B2
    • 2008-07-08
    • US11398705
    • 2006-04-06
    • Michael F. ZonaJoseph A. SwiftDan A. HaysJohn S. Facci
    • Michael F. ZonaJoseph A. SwiftDan A. HaysJohn S. Facci
    • G03G15/02
    • G03G15/1635G03G15/02G03G2215/026G03G2215/1609
    • Electrophotographic charging devices and methods for charging a receptor with a solid state charging device are disclosed. In an exemplary embodiment, the solid state charging device can include a dielectric layer, a first electrode disposed adjacent to a first surface of the dielectric layer, and a second electrode having a first surface disposed adjacent to a second surface of the dielectric layer. The solid state charging device can further include a plurality of nanostructures each having an end in electrical contact with a second surface of the second electrode. The exemplary solid state charging devices including the nanostructures can use less voltage than conventional charging devices, produce a reduced amount of oxidizing agents, such as, ozone and NOx, and/or operate at a lower temperature.
    • 公开了用固态充电装置对受体充电的电子照相充电装置和方法。 在示例性实施例中,固态充电装置可以包括电介质层,邻近电介质层的第一表面设置的第一电极和具有邻近电介质层的第二表面设置的第一表面的第二电极。 固态充电装置还可以包括多个纳米结构,每个纳米结构具有与第二电极的第二表面电接触的端部。 包括纳米结构的示例性固态充电装置可以使用比常规充电装置更少的电压,产生减少量的氧化剂,例如臭氧和NO x,和/或在较低温度下操作。
    • 65. 发明授权
    • Nano-structure coated coronodes for low voltage charging devices
    • 用于低压充电装置的纳米结构涂层冠状结构
    • US07397032B2
    • 2008-07-08
    • US11398685
    • 2006-04-06
    • Michael F. ZonaJoseph A. SwiftDan A. Hays
    • Michael F. ZonaJoseph A. SwiftDan A. Hays
    • G03G15/02
    • H01T19/00G03G15/0291G03G2215/027
    • Electrophotographic charging devices that can be used to charge or discharge, for example, a receptor in the electrophotographic process are provided. According to various embodiments, the exemplary charging devices can include a coronode disposed opposing and spaced apart from a receptor, and a plurality of nanostructures, wherein each of the plurality of nanostructures has an end, edge, or side in electrical contact with the coronode. The exemplary charging devices including the nanostructures can use less power, i.e. voltage and/or current than conventional charging devices and produce a reduced amount of oxidizing agents, such as, ozone and NOx. The nanostructures can serve to increase the intensity of the local electric fields for more efficient charge generation at reduced voltages.
    • 提供了可用于对电子照相方法中的受体进行充电或放电的电子照相充电装置。 根据各种实施例,示例性充电装置可以包括设置成与受体相对并间隔开的冠状结构,以及多个纳米结构,其中多个纳米结构中的每一个具有与冠状结构电接触的端部,边缘或侧面。 包括纳米结构的示例性充电装置可以使用比常规充电装置更少的功率,即电压和/或电流,并产生减少量的氧化剂,例如臭氧和NO x。 纳米结构可以用于增加局部电场的强度,从而在降低的电压下产生更有效的电荷。