Microcavity OLED device
    1.
    发明授权
    Microcavity OLED device 有权
    微腔OLED器件

    公开(公告)号:US06917159B2

    公开(公告)日:2005-07-12

    申请号:US10640907

    申请日:2003-08-14

    CPC分类号: H01L51/5265 H01L27/3211

    摘要: A microcavity OLED device including a substrate; a metallic bottom-electrode layer disposed over the substrate; a metallic top-electrode layer spaced from the metallic bottom-electrode layer; and an organic EL medium structure having a defined thickness, and including a light-emitting layer comprising a host material and at least one dopant disposed between the top-electrode layer and the bottom-electrode layer; wherein one of the metallic electrode layers is light transmissive and the other one is essentially opaque and reflective; wherein the material for reflective metallic electrode layer includes Ag, Au, Al, or alloys thereof, and the material for the light transmissive metallic electrode layer includes Ag, Au, or alloys thereof. The at least one dopant is selected to generate one of red, green, or blue light in the light-emitting layer. The defined thickness of the EL medium structure is selected so that the microcavity OLED device is tuned for emission of one of red, green, or blue light through the light transmissive electrode layer.

    摘要翻译: 一种微腔OLED器件,包括:衬底; 设置在所述基板上的金属底电极层; 与金属底电极层间隔开的金属顶电极层; 以及具有规定厚度的有机EL介质结构,并且包括包含主体材料的发光层和设置在所述顶部电极层和所述底部电极层之间的至少一种掺杂剂的发光层; 其中所述金属电极层之一是透光的,另一个基本上是不透明的和反射性的; 其中反射金属电极层的材料包括Ag,Au,Al或其合金,并且用于透光金属电极层的材料包括Ag,Au或其合金。 选择至少一种掺杂剂以在发光层中产生红色,绿色或蓝色光中的一种。 选择限定的EL介质结构的厚度,使得微腔OLED器件被调谐以通过透光电极层发射红色,绿色或蓝色光中的一种。

    Tuned microcavity color OLED display
    3.
    发明授权
    Tuned microcavity color OLED display 有权
    调谐微腔彩色OLED显示屏

    公开(公告)号:US06861800B2

    公开(公告)日:2005-03-01

    申请号:US10368513

    申请日:2003-02-18

    摘要: A color organic light-emitting display device having an array of pixels divided into at least two different color pixel sets each color pixel set emitting a different predetermined color light over a common substrate, wherein each pixel in the array includes a metallic bottom-electrode layer disposed over the substrate and a metallic electrode layer spaced from the metallic bottom-electrode layer; wherein the material for reflective metallic electrode layer includes Ag, Au, Al, or alloys thereof, the material for the semitransparent metallic electrode layer includes Ag, Au, or alloys thereof; and wherein the thickness of the semitransparent metallic electrode layer, the combined thickness of the organic layers and the transparent conductive phase-layer, and the placement of the light-emitting layer are selected so that each pixel in the display forms a tuned microcavity OLED device having an emission output efficiency above that of a comparable OLED device without the microcavity.

    摘要翻译: 一种彩色有机发光显示装置,其具有被划分为至少两个不同颜色像素组的像素阵列,每个彩色像素组在公共基板上发射不同的预定颜色光,其中阵列中的每个像素包括金属底电极层 设置在所述基板上方的金属电极层和与所述金属底电极层间隔开的金属电极层; 其中所述反射金属电极层的材料包括Ag,Au,Al或其合金,所述半透明金属电极层的材料包括Ag,Au或其合金; 并且其中选择半透明金属电极层的厚度,有机层和透明导电相层的组合厚度以及发光层的布置,使得显示器中的每个像素形成调谐微腔OLED器件 其发射输出效率高于不具有微腔的可比OLED器件的发射效率。

    OLED device with improved performance
    5.
    发明授权
    OLED device with improved performance 有权
    OLED器件具有改进的性能

    公开(公告)号:US08057916B2

    公开(公告)日:2011-11-15

    申请号:US11110205

    申请日:2005-04-20

    IPC分类号: H01L51/54

    摘要: An OLED device includes an anode, a cathode, and at least one individually selected organic light-emitting layer disposed between the anode and cathode. The device also includes an electron-transporting layer disposed between the at least one light-emitting layer and the cathode, such electron-transporting layer including a first electron-transporting material, and an electron-injecting layer disposed between the electron-transporting layer and the cathode, such electron-injecting layer including a metal dopant having a work function less than 4.0 eV and an electron-transporting material that is different from the first electron-transporting material.

    摘要翻译: OLED器件包括阳极,阴极和设置在阳极和阴极之间的至少一个单独选择的有机发光层。 该装置还包括设置在至少一个发光层和阴极之间的电子传输层,该电子传输层包括第一电子传输材料和设置在电子传输层和 阴极,这种电子注入层包括功函数小于4.0eV的金属掺杂剂和不同于第一电子传输材料的电子传输材料。

    OLED device with short reduction
    6.
    发明授权
    OLED device with short reduction 有权
    OLED器件减少

    公开(公告)号:US07687990B2

    公开(公告)日:2010-03-30

    申请号:US11734485

    申请日:2007-04-12

    IPC分类号: H01J1/62

    摘要: In an OLED device having a substrate, a first electrode layer disposed over the substrate, an inorganic short reduction layer disposed over the first electrode layer, an organic electroluminescent medium disposed over the short reduction layer, and a second electrode layer over the electroluminescent medium, a feature is the inclusion of a mixture of ZnS, SiO2, and ITO in the short reduction layer wherein the ratio of In atoms to Zn atoms is in the range of from 0.90 to 2.37.

    摘要翻译: 在具有衬底的OLED器件中,设置在衬底上的第一电极层,设置在第一电极层上的无机短路还原层,设置在短还原层上的有机电致发光介质和位于电致发光介质上的第二电极层, 其特征是在短的还原层中包含ZnS,SiO 2和ITO的混合物,其中In原子与Zn原子的比例在0.90-2.73的范围内。

    OLED device having microcavity gamut subpixels and a within gamut subpixel
    7.
    发明授权
    OLED device having microcavity gamut subpixels and a within gamut subpixel 有权
    OLED器件具有微腔色域子像素和色域内子像素

    公开(公告)号:US07030553B2

    公开(公告)日:2006-04-18

    申请号:US10643837

    申请日:2003-08-19

    IPC分类号: H01J1/62 H01J63/04 H05B33/00

    摘要: An OLED device including an array of light emitting pixels, each pixel including subpixels having organic layers including at least one emissive layer that produces light and spaced electrodes, and wherein there are at least three gamut subpixels that produce colors which define a color gamut and at least one subpixel that produces light within the color gamut produced by the gamut subpixels; and wherein at least one of the gamut subpixels includes a reflector and a semitransparent reflector which function to form a microcavity.

    摘要翻译: 一种包括发光像素阵列的OLED器件,每个像素包括具有有机层的子像素,所述子像素包括产生光和间隔电极的至少一个发射层,并且其中至少有三个色域子像素产生定义色域的颜色, 至少一个子像素,其产生由色域子像素产生的色域内的光; 并且其中所述色域子像素中的至少一个包括反射器和用于形成微腔的半透明反射器。

    OLED DEVICE WITH SHORT REDUCTION
    8.
    发明申请
    OLED DEVICE WITH SHORT REDUCTION 有权
    具有短缩的OLED器件

    公开(公告)号:US20080252208A1

    公开(公告)日:2008-10-16

    申请号:US11734485

    申请日:2007-04-12

    IPC分类号: H01J63/04

    摘要: In an OLED device having a substrate, a first electrode layer disposed over the substrate, an inorganic short reduction layer disposed over the first electrode layer, an organic electroluminescent medium disposed over the short reduction layer, and a second electrode layer over the electroluminescent medium, a feature is the inclusion of a mixture of ZnS, SiO2, and ITO in the short reduction layer wherein the ratio of In atoms to Zn atoms is in the range of from 0.90 to 2.37.

    摘要翻译: 在具有衬底的OLED器件中,设置在衬底上的第一电极层,设置在第一电极层上的无机短路还原层,设置在短还原层上的有机电致发光介质和位于电致发光介质上的第二电极层, 其特征是在短的还原层中包含ZnS,SiO 2和ITO的混合物,其中In原子与Zn原子的比例在0.90至2.37的范围内。

    LED device having improved contrast
    10.
    发明授权
    LED device having improved contrast 有权
    LED装置具有改善的对比度

    公开(公告)号:US07859188B2

    公开(公告)日:2010-12-28

    申请号:US11842221

    申请日:2007-08-21

    IPC分类号: H01J1/62

    摘要: A light-emitting diode device, including a substrate; and a reflective electrode and a semi-transparent electrode formed over the substrate and an unpatterned white light-emitting layer formed between the reflective electrode and the semi-transparent electrode, the reflective electrode, semi-transparent electrode, and unpatterned white-light-emitting layer forming an optical microcavity, and wherein either the reflective or semi-transparent electrodes is patterned to form a plurality of independently controllable light-emitting elements with at least one light-emitting element having no color filter. Color filters are formed over a side of the semi-transparent electrodes opposite the unpatterned white light-emitting layer in correspondence with the light-emitting elements, the color filters having at least two different colors. Additionally, a reflected-light absorbing layer is located over all of the light-emitting elements.

    摘要翻译: 一种发光二极管装置,包括基板; 以及形成在基板上的反射电极和半透明电极以及形成在反射电极和半透明电极之间的无图案白色发光层,反射电极,半透明电极和未图案化的白光发射 层,形成光学微腔,并且其中反射或半透明电极被图案化以形成具有至少一个不具有滤色器的发光元件的多个独立可控的发光元件。 彩色滤光片形成在半透明电极的与未图案化的白色发光层相对的发光元件的一侧,滤色器具有至少两种不同的颜色。 另外,反射光吸收层位于所有发光元件上。