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    • 6. 发明授权
    • Color organic electroluminescent display and method for fabricating the same
    • 彩色有机电致发光显示器及其制造方法
    • US07619243B2
    • 2009-11-17
    • US11296419
    • 2005-12-08
    • Yuh-Zheng LeeChing-Ian ChaoHsuan-Ming TsaiFu-Kang ChengJhih-Ping LuJe-Ping HuKuo-Tong Lin
    • Yuh-Zheng LeeChing-Ian ChaoHsuan-Ming TsaiFu-Kang ChengJhih-Ping LuJe-Ping HuKuo-Tong Lin
    • H01L29/08H01L35/24H01L51/00
    • H01L51/0005H01L51/56
    • A method of fabricating a color organic electroluminescent display involves forming cathode electrodes on a substrate, and forming a first organic semiconductor layer having an electron-injection transporting property on the cathode electrodes. Solutions containing organic light-emitting material that can dissolve portions of the first organic semiconductor layer are patterned on the first organic semiconductor layer. Then, a solvent in the solutions is removed to form regions having second organic semiconductor layers and mixed organic semiconductor layers, wherein the second organic semiconductor layers are formed on the first organic semiconductor layer and are mostly composed of the organic light-emitting material, and the mixed organic semiconductor layers, composed of the organic light-emitting material and material constituting the first organic semiconductor layer, are embedded in the first organic semiconductor layer. Anode electrodes are formed over the first and second organic semiconductor layers. The present invention also provides a color organic electroluminescent display.
    • 彩色有机电致发光显示器的制造方法包括在基板上形成阴极,在阴极电极上形成具有电子注入传输性的第一有机半导体层。 含有可溶解第一有机半导体层的部分的有机发光材料的溶液在第一有机半导体层上图案化。 然后,去除溶液中的溶剂以形成具有第二有机半导体层和混合有机半导体层的区域,其中第二有机半导体层形成在第一有机半导体层上,并且大多由有机发光材料组成,以及 由有机发光材料构成的混合有机半导体层和构成第一有机半导体层的材料嵌入第一有机半导体层。 在第一和第二有机半导体层上形成阳极电极。 本发明还提供一种彩色有机电致发光显示器。
    • 9. 发明授权
    • Operating process of organic device
    • 有机装置的运行过程
    • US07746684B2
    • 2010-06-29
    • US12258450
    • 2008-10-27
    • Chao-Feng SungJe-Ping HuYang Yang
    • Chao-Feng SungJe-Ping HuYang Yang
    • G11C11/00
    • H01L51/0583B82Y10/00G11C11/5664G11C13/0014G11C13/0016G11C2213/51G11C2213/55H01L51/0036H01L51/0078H01L51/0081H01L51/0591Y10T428/24917
    • An operating process of an organic device includes performing a programming process and an erasing process. The programming process includes steps of applying a first positive bias from the first electrode to the second electrode on the organic device so that a conductive state of the organic device is switched to be a first turn-on state when the organic device is in a turn-off state and applying a negative bias from the first electrode to the second electrode on the organic device so that the conductive state of the organic device is switched to be a second turn-on state when the organic device is in the first turn-on state. The erasing process includes a step of applying a second positive bias from the first electrode to the second electrode on the organic device so that the conductive state of the organic device is switched to be the turn-off state.
    • 有机器件的操作过程包括执行编程处理和擦除处理。 编程过程包括以下步骤:在有机器件上将来自第一电极的第一正偏压施加到第二电极,使得当有机器件处于转弯时,有机器件的导通状态被切换为第一导通状态 并且在有机器件上从第一电极施加负偏压到第二电极,使得当有机器件处于第一导通状态时,有机器件的导通状态被切换为第二导通状态 州。 擦除处理包括在有机器件上从第一电极施加第二正偏压到第二电极的步骤,使得有机器件的导通状态被切换为关断状态。
    • 10. 发明申请
    • ORGANIC BISTABLE DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 有机可弯曲装置及其制造方法
    • US20070069201A1
    • 2007-03-29
    • US11306563
    • 2006-01-03
    • Chao-Feng SungJe-Ping Hu
    • Chao-Feng SungJe-Ping Hu
    • H01L29/08H01L29/94
    • H01L51/0575
    • An organic bistable device includes a first electrode, a second electrode, and an organic mixture layer, wherein the organic mixture layer is located between the first electrode and the second electrode. While a bias is applied between the first electrode and the second electrode of the bistable device, the doped metal material/particle is used as a mediator for injecting electrons. Therefore, both the writing/erasing cycle times and life time of an organic bistable device are increased. Moreover, the organic bistable device having an organic mixture layer with metal dopants possesses a relatively stable low conductance (off-current) state. Hence, by applying the voltage thereon, the organic bistable device can be well controlled to be turned on or turned off.
    • 有机双稳态器件包括第一电极,第二电极和有机混合物层,其中有机混合物层位于第一电极和第二电极之间。 虽然在双稳态器件的第一电极和第二电极之间施加偏压,但掺杂的金属材料/粒子用作注入电子的介质。 因此,有机双稳态器件的写入/擦除周期时间和寿命都增加。 此外,具有金属掺杂剂的有机混合层的有机双稳态器件具有相对稳定的低电导(截止)状态。 因此,通过在其上施加电压,可以良好地控制有机双稳态器件的导通或截止。