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    • 7. 发明申请
    • Reduction or elimination of color change with viewing angle for microcavity devices
    • 用于微腔设备的视角减少或消除颜色变化
    • US20060066220A1
    • 2006-03-30
    • US10951514
    • 2004-09-27
    • Vi-En ChoongFranky So
    • Vi-En ChoongFranky So
    • H05B33/02H05B33/00
    • H01L51/5265
    • In an embodiment of the invention, a microcavity OLED device that minimizes or eliminates color change at different viewing angles is fabricated. This OLED device includes a multi-layer mirror on a substrate, and each of the layers are comprised of a non-absorbing material. The OLED device also includes a first electrode on the multi-layered first mirror, and the first electrode is substantially transparent. An emissive layer is on the first electrode. A second electrode is on the emissive layer, and the second electrode is substantially reflective and functions as a mirror. The multi-layer mirror and the second electrode form a microcavity that amplifies a particular wavelength that is in resonance with an optical length of the microcavity. The emissive layer is comprised of a material that has an emission spectrum with no luminance components with significant intensity at wavelengths shorter than a wavelength at which a color change begins to occur.
    • 在本发明的一个实施例中,制造了在不同视角下最小化或消除颜色变化的微腔OLED器件。 该OLED器件包括在衬底上的多层反射镜,并且每个层由非吸收材料构成。 OLED器件还包括在多层第一反射镜上的第一电极,并且第一电极基本上是透明的。 发射层位于第一电极上。 第二电极位于发射层上,第二电极基本上是反射性的并且用作反射镜。 多层反射镜和第二电极形成放大与微腔的光学长度共振的特定波长的微腔。 发射层由具有发射光谱的材料组成,其发射光谱的波长比开始发生颜色变化的波长短,其亮度分量没有明显的强度。
    • 8. 发明授权
    • Organic electroluminescent device with enhanced performance
    • 具有增强性能的有机电致发光器件
    • US6064151A
    • 2000-05-16
    • US986621
    • 1997-12-08
    • Vi-en ChoongJi-Hai XuFranky SoSong Q. Shi
    • Vi-en ChoongJi-Hai XuFranky SoSong Q. Shi
    • H01L51/50H01L51/52H01J1/62
    • H01L51/5092
    • An organic electroluminescent device with enhanced performance includes anode and cathode electrodes with organic material, single or multiple layers, positioned therebetween and in juxtaposition to each of the electrodes. The organic material is doped with an AMC dopant with a concentration in a range of approximately 0.1 Wt % to 15 Wt % in a region of the organic material adjacent to the cathode electrode. This doped region has a thickness in a range of approximately 20 .ANG. to 600 .ANG.. The dopant includes either a low work function alkaline metal compound, such as LiF, LiCl, KBr, MgF.sub.2, LiO.sub.2, MgO.sub.x, CaO.sub.x, and CsO.sub.x or a low work function alkaline metal alloy, such as Li--Al, Li--In, Sr--Al, Cs--Al.
    • 具有增强性能的有机电致发光器件包括具有有机材料的阳极和阴极电极,单层或多层,位于它们之间并与每个电极并置。 在与阴极相邻的有机材料的区域中,有机材料掺杂浓度在约0.1Wt%至15Wt%范围内的AMC掺杂剂。 该掺杂区域的厚度在大约20安培到600安培的范围内。 掺杂剂包括LiF,LiCl,KBr,MgF 2,LiO 2,MgO x,CaO x和CsO x等低功函碱金属化合物或低功函碱金属合金,例如Li-Al,Li-In,Sr -Al,Cs-Al。