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    • 10. 发明授权
    • Inverted OLED device with improved efficiency
    • 倒装OLED器件效率提高
    • US07719180B2
    • 2010-05-18
    • US11873052
    • 2007-10-16
    • Jeffrey P. SpindlerTukaram K. Hatwar
    • Jeffrey P. SpindlerTukaram K. Hatwar
    • H05B33/00
    • H01L51/5088H01L51/0072H01L51/5092H01L2251/554
    • An inverted OLED device, comprising: a substrate; a cathode disposed on the substrate; an anode spaced from the cathode; at least one light-emitting layer disposed between the anode and the cathode; a hole-transporting layer disposed between the anode and the light-emitting layer(s); an electron-transporting layer disposed between the cathode and the light-emitting layer(s); a first electron-accepting layer disposed between the hole-transporting layer and the anode and including a first electron-deficient organic material constituting more than 50% by volume of the first electron-accepting layer and having a reduction potential greater than −0.5 V vs. a Saturated Calomel Electrode; and a second electron-accepting layer disposed between the electron-transporting layer and the cathode including a second electron-deficient organic material constituting more than 50% by volume of the second electron-accepting layer and having a reduction potential greater than −0.5 V vs. a Saturated Calomel Electrode.
    • 一种反向OLED器件,包括:衬底; 设置在基板上的阴极; 与阴极间隔开的阳极; 设置在阳极和阴极之间的至少一个发光层; 设置在阳极和发光层之间的空穴传输层; 设置在阴极和发光层之间的电子传输层; 第一电子接受层,设置在空穴传输层和阳极之间,并且包括构成大于50体积%的第一电子接受层的第一电子缺陷有机材料,并且具有大于-0.5V的还原电位vs 饱和马氏体电极; 以及设置在所述电子传输层和所述阴极之间的第二电子接收层,包括构成所述第二电子接收层的体积的50体积%以上的第二电子缺陷型有机材料,并且具有大于-0.5V的还原电位vs 一个饱和的Calomel电极。