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    • 33. 发明申请
    • Tandem OLED device
    • 串联OLED器件
    • US20060240277A1
    • 2006-10-26
    • US11110071
    • 2005-04-20
    • Tukaram HatwarLiang-Sheng LiaoYuan-Sheng TyanSteven Van Slyke
    • Tukaram HatwarLiang-Sheng LiaoYuan-Sheng TyanSteven Van Slyke
    • H01L51/50H05B33/00
    • H01L51/0052C09K11/06H01L51/0059H01L51/0081H01L51/5052H01L51/5278H01L2251/305H01L2251/308H05B33/14
    • A tandem OLED device includes an anode, a cathode, first and second electroluminescent units disposed between the anode and the cathode, and an intermediate connector disposed between the first and second electroluminescent units. Each of the electroluminescent units include at least one individually selected organic light-emitting layer, and the first electroluminescent unit includes a first electron-transporting layer disposed between the cathode and the light-emitting layer of the first electroluminescent unit, wherein the first electron-transporting layer includes a first electron-transporting material. The intermediate connector includes a first n-type doped organic layer disposed in contact with the first electron-transporting layer, and wherein the first n-type doped organic layer includes an n-type dopant and an electron-transporting material that is different from the first electron-transporting material.
    • 串联OLED器件包括阳极,阴极,设置在阳极和阴极之间的第一和第二电致发光单元,以及设置在第一和第二电致发光单元之间的中间连接器。 每个电致发光单元包括至少一个单独选择的有机发光层,并且第一电致发光单元包括设置在第一电致发光单元的阴极和发光层之间的第一电子传输层,其中第一电子发射单元, 传输层包括第一电子传输材料。 中间连接器包括与第一电子传输层接触设置的第一n型掺杂有机层,并且其中第一n型掺杂有机层包括n型掺杂剂和不同于第一n型掺杂的电子传输材料 第一电子传输材料。
    • 37. 发明授权
    • Organic electroluminescent devices having a metal sub-layer within a hole-transporting region
    • 在空穴传输区域内具有金属子层的有机电致发光器件
    • US06818329B1
    • 2004-11-16
    • US10678856
    • 2003-10-03
    • Liang-Sheng LiaoJoseph K. Madathil
    • Liang-Sheng LiaoJoseph K. Madathil
    • H05B3312
    • H01L51/5048Y10S428/917
    • An organic electroluminescent device including an anode; a hole-transporting region disposed over the anode; wherein the hole-transporting region contains at least one hole-transporting material; a metal sub-layer disposed within the hole-transporting region; wherein the metal sub-layer contains at least one metal selected from group 4 through group 16 of the Periodic Table of Elements and the selected metal has a work-function higher than 4.0 eV; a light-emitting layer formed in contact with the hole-transporting region for producing light in response to hole-electron recombination; an electron-transporting layer disposed over the light-emitting layer; and a cathode disposed over the electron-transporting layer.
    • 一种包括阳极的有机电致发光器件; 设置在所述阳极上的空穴传输区域; 其中所述空穴传输区域包含至少一种空穴传输材料; 设置在所述空穴传输区域内的金属子层; 其中所述金属子层含有选自元素周期表第4至16族的至少一种金属,并且所选择的金属具有高于4.0eV的功函数; 与空穴传输区接触形成的发光层,用于响应于空穴电子复合而产生光; 设置在发光层上的电子传输层; 以及设置在电子传输层上的阴极。
    • 39. 发明授权
    • Light emitting device with microlens array
    • 具有微透镜阵列的发光器件
    • US07931515B2
    • 2011-04-26
    • US12785091
    • 2010-05-21
    • Krishnan ChariCharles W. LanderLiang-Sheng LiaoPaul D. Yacobucci
    • Krishnan ChariCharles W. LanderLiang-Sheng LiaoPaul D. Yacobucci
    • H01J9/00H01J9/02
    • B29D11/00365B29D11/00807G02B3/0006
    • A method of manufacturing a micro-lens array and light-emitting device, comprising forming a first structured polymer film with close packed surface cavities having a mean diameter of less than 20 micrometers and a relatively lower surface energy surface, forming a transparent second structured film with an array of microlenses formed thereon corresponding to the cavities of the first structured film, wherein the second structured film comprises a relatively high surface energy material and has a refractive index greater than 1.45, and wherein the microlenses are randomly distributed, separating the second structured film with the micro-lens array from the first structured polymer film, and attaching the second structured film to a transparent substrate or cover of a light-emitting device through which light is emitted. Use of microlens arrays formed from relatively high surface energy materials enables matching refractive index of microlens array to that of light-emitting devices substrate or cover through which light is emitted and relatively high elastic modulus providing good scratch resistance.
    • 一种制造微透镜阵列和发光器件的方法,包括:形成具有平均直径小于20微米的密堆积表面腔的第一结构化聚合物膜和相对较低的表面能表面,形成透明的第二结构膜 其上形成有对应于第一结构化膜的空腔的微透镜阵列,其中第二结构化膜包括相对高的表面能材料并具有大于1.45的折射率,并且其中微透镜是随机分布的,将第二结构化膜 具有来自第一结构化聚合物膜的微透镜阵列的膜,以及将第二结构膜附着到发光装置的透明基板或盖。 使用由相对高的表面能材料形成的微透镜阵列使微透镜阵列的折射率能够匹配发光器件的发光器件衬底或覆盖层,通过该发光器件衬底或盖发射光,并且相对较高的弹性模量提供良好的耐刮擦性。