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    • 1. 发明申请
    • ORGANIC SEMICONDUCTOR DEVICE, DISPLAY USING SAME, AND IMAGER
    • 有机半导体器件,使用它的显示器和成像器
    • US20090212281A1
    • 2009-08-27
    • US10586538
    • 2005-01-20
    • Chihaya AdachiNaotoshi Suganuma
    • Chihaya AdachiNaotoshi Suganuma
    • H01L51/52H01L51/44
    • H01L27/3244H01L27/3234H01L51/5296
    • An organic semiconductor device in which recombination of holes and electrons and photoelectric conversion in an organic semiconductor layer are efficiently allowed to occur. The device comprises a bipolar organic semiconductor layer where electrons and holes move, a hole giving/receiving electrode which gives/receives holes to/from the organic semiconductor layer, an electron giving/receiving electrode which is spaced a predetermined distance from the hole giving/receiving electrode and gives/receives electrons to/from the organic semiconductor layer, a hole-side gate electrode which is opposed to a region of the organic semiconductor layer near the hole giving/receiving electrode with an insulating layer between the hole-side gate electrode and the region and serves to control the hole distribution in the organic semiconductor layer, and an electron-side gate electrode which is opposed to the region of the organic semiconductor layer with the insulating layer therebetween and serves to control the electron distribution in the organic semiconductor layer.
    • 有效地允许发生空穴和电子的复合和有机半导体层中的光电转换的有机半导体器件。 该器件包括电子和空穴移动的双极有机半导体层,向/从有机半导体层发出/接收空穴的空穴给予/接收电极,与给予/接收电极间隔预定距离的电子给予/接收电极, 接收电极并向/从有机半导体层发出/接收电子;空穴侧栅极电极,其与有机半导体层附近的有机半导体层的区域相邻,所述有机半导体层附近具有绝缘层,所述绝缘层位于孔侧栅电极 和该区域,用于控制有机半导体层中的空穴分布,以及与有机半导体层的与绝缘层之间的绝缘层相对的电子侧栅电极,用于控制有机半导体中的电子分布 层。
    • 2. 发明授权
    • Organic semiconductor device, display using same, and imager
    • 有机半导体器件,使用其的显示器和成像器
    • US07868319B2
    • 2011-01-11
    • US10586538
    • 2005-01-20
    • Chihaya AdachiNaotoshi Suganuma
    • Chihaya AdachiNaotoshi Suganuma
    • H01J1/62
    • H01L27/3244H01L27/3234H01L51/5296
    • An organic semiconductor device in which recombination of holes and electrons and photoelectric conversion in an organic semiconductor layer are efficiently allowed to occur. The device comprises a bipolar organic semiconductor layer where electrons and holes move, a hole giving/receiving electrode which gives/receives holes to/from the organic semiconductor layer, an electron giving/receiving electrode which is spaced a predetermined distance from the hole giving/receiving electrode and gives/receives electrons to/from the organic semiconductor layer, a hole-side gate electrode which is opposed to a region of the organic semiconductor layer near the hole giving/receiving electrode with an insulating layer between the hole-side gate electrode and the region and serves to control the hole distribution in the organic semiconductor layer, and an electron-side gate electrode which is opposed to the region of the organic semiconductor layer with the insulating layer therebetween and serves to control the electron distribution in the organic semiconductor layer.
    • 有效地允许发生空穴和电子的复合和有机半导体层中的光电转换的有机半导体器件。 该器件包括电子和空穴移动的双极有机半导体层,向/从有机半导体层发出/接收空穴的空穴给予/接收电极,与给予/接收电极间隔预定距离的电子给予/接收电极, 接收电极并向/从有机半导体层发出/接收电子;空穴侧栅极电极,其与有机半导体层附近的有机半导体层的区域相邻,所述有机半导体层附近具有绝缘层,所述绝缘层位于孔侧栅电极 和该区域,用于控制有机半导体层中的空穴分布,以及与有机半导体层的与绝缘层之间的绝缘层相对的电子侧栅电极,用于控制有机半导体中的电子分布 层。