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    • 54. 发明授权
    • Flexible nanostructure electronic devices
    • 柔性纳米结构电子器件
    • US08456074B2
    • 2013-06-04
    • US13096891
    • 2011-04-28
    • N. Peter ArmitageKeith BradleyJean-Christophe P. GabrielGeorge Gruner
    • N. Peter ArmitageKeith BradleyJean-Christophe P. GabrielGeorge Gruner
    • H01J1/02
    • H01B1/24B82Y10/00B82Y15/00H01L51/0048H01L51/0097H01L51/0595
    • A flexible electronic device is made up of nanostructures. Specifically, the device includes a flexible substrate, a film of nanostructures in contact with the flexible substrate, a first conducting element in contact with the film of nanostructures, and a second conducting element in contact with the film of nanostructures. The nanostructures may comprise nanotubes, such as carbon nanotubes disposed along the flexible substrate, such as an organic or polymer substrate. The first and second conductive elements may serve as electrical terminals, or as a source and drain. In addition, the electronic device may include a gate electrode that is in proximity to the nanotubes and not in electrical contact with the nanotubes. In this configuration, the device can operate as a transistor or a FET. The device may also be operated in a resistive mode as a chemical sensor (e.g., for sensing NH3).
    • 灵活的电子设备由纳米结构组成。 具体地,该装置包括柔性基板,与柔性基板接触的纳米结构薄膜,与纳米结构薄膜接触的第一导电元件和与纳米结构薄膜接触的第二导电元件。 纳米结构可以包括纳米管,例如沿着柔性基底设置的碳纳米管,例如有机或聚合物基底。 第一和第二导电元件可以用作电端子,或用作源极和漏极。 此外,电子器件可以包括位于纳米管附近并且不与纳米管电接触的栅电极。 在这种配置中,器件可以作为晶体管或FET工作。 该装置还可以作为化学传感器(例如,用于感测NH 3)以电阻模式操作。
    • 57. 发明申请
    • FLEXIBLE NANOSTRUCTURE ELECTRONIC DEVICES
    • 柔性纳米结构电子器件
    • US20120025165A1
    • 2012-02-02
    • US13096891
    • 2011-04-28
    • N. Peter ArmitageKeith BradleyJean-Christophe P. GabrielGeorge Grüner
    • N. Peter ArmitageKeith BradleyJean-Christophe P. GabrielGeorge Grüner
    • H01L29/66B82Y99/00
    • H01B1/24B82Y10/00B82Y15/00H01L51/0048H01L51/0097H01L51/0595
    • A flexible electronic device is made up of nanostructures. Specifically, the device includes a flexible substrate, a film of nanostructures in contact with the flexible substrate, a first conducting element in contact with the film of nanostructures, and a second conducting element in contact with the film of nanostructures. The nanostructures may comprise nanotubes, such as carbon nanotubes disposed along the flexible substrate, such as an organic or polymer substrate. The first and second conductive elements may serve as electrical terminals, or as a source and drain. In addition, the electronic device may include a gate electrode that is in proximity to the nanotubes and not in electrical contact with the nanotubes. In this configuration, the device can operate as a transistor or a FET. The device may also be operated in a resistive mode as a chemical sensor (e.g., for sensing NH3).
    • 灵活的电子设备由纳米结构组成。 具体地,该装置包括柔性基板,与柔性基板接触的纳米结构薄膜,与纳米结构薄膜接触的第一导电元件和与纳米结构薄膜接触的第二导电元件。 纳米结构可以包括纳米管,例如沿着柔性基底设置的碳纳米管,例如有机或聚合物基底。 第一和第二导电元件可以用作电端子,或用作源极和漏极。 此外,电子器件可以包括位于纳米管附近并且不与纳米管电接触的栅电极。 在这种配置中,器件可以作为晶体管或FET工作。 该装置还可以作为化学传感器(例如,用于感测NH 3)以电阻模式操作。