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    • 7. 发明授权
    • Organic light-emitting device with meandering electrode surface, and method for manufacturing same
    • 具有曲折电极表面的有机发光装置及其制造方法
    • US07633221B2
    • 2009-12-15
    • US10565907
    • 2003-08-05
    • Naohide WakitaSeiji Nishiyama
    • Naohide WakitaSeiji Nishiyama
    • H05B33/00
    • H01L51/5203H01L27/3244H01L51/5012Y10S428/917
    • An organic electroluminescent element has a substrate, a first electrode formed above the substrate, an emissive layer, and a second electrode formed above the emissive layer. In the first electrode, at least a surface opposite to the other surface facing the substrate has a multidimensionally meandering surface shape. The emissive layer includes an organic electroluminescent material and is formed along the multidimensionally-meandering-shaped surface of the first electrode. In the emissive layer, a surface facing the first electrode and the other surface opposite to the first-electrode-facing surface each have a multidimensionally meandering surface shape. The organic electroluminescent element of the present invention is used in an electroluminescent (EL) type display device as a pixel that is controlled individually for light emission. Also, the organic electroluminescent element of the present invention is used as a light source of an electroluminescent (EL) type lighting system. As a result, an organic electroluminescent element with high luminance and an organic electroluminescent element with a long lifetime are provided, and an EL display device and an EL lighting system using such elements are provided.
    • 有机电致发光元件具有衬底,形成在衬底上的第一电极,发射层和形成在发光层之上的第二电极。 在第一电极中,至少与面向衬底的另一表面相对的表面具有多维曲折的表面形状。 发射层包括有机电致发光材料,并且沿着第一电极的多维曲折形状的表面形成。 在发光层中,面向第一电极的表面和与第一电极对置表面相对的另一表面各自具有多维曲折的表面形状。 本发明的有机电致发光元件用于电致发光(EL)型显示装置中,作为单独控制发光的像素。 此外,本发明的有机电致发光元件也用作电致发光(EL)型照明系统的光源。 结果,提供了具有高亮度的有机电致发光元件和具有长寿命的有机电致发光元件,并且提供了使用这些元件的EL显示装置和EL照明系统。
    • 8. 发明授权
    • Polymer dispersion type liquid crystal display panel and manufacturing method thereof
    • 聚合物分散型液晶显示面板及其制造方法
    • US06630969B2
    • 2003-10-07
    • US10072586
    • 2002-02-11
    • Hirofumi KubotaTsuyoshi UemuraKenji NakaoSeiji Nishiyama
    • Hirofumi KubotaTsuyoshi UemuraKenji NakaoSeiji Nishiyama
    • G02F11333
    • G02F1/134363G02F1/1334G02F1/133553G02F2001/13756
    • The purpose is to provide a polymer dispersion type liquid crystal display panel wherein both a high contrast and a low driving voltage are obtained and scattering performance is superior. The polymer dispersion type liquid crystal display panel comprises a pair of substrates 10, 11, a polymer dispersion type liquid crystal layer 12 comprising a liquid crystal 18 and a liquid crystalline polymer 17, a driving electrode 7 and an opposite electrode 8. The driving electrode 7 and the opposite electrode 8 are formed on the lower substrate 11, and an electric field is applied approximately in parallel with the above-mentioned lower substrate 11. Under no application of voltage, the above-mentioned liquid crystal 18 and the polymer 17 adjacent to the liquid crystal, which composes an interface, are aligned in approximately the same direction on a plane parallel with the substrates according to an alignment treatment of the substrates, and thereby a transparent state is obtained. Under an application of voltage, the liquid crystal 18 rotates on a plane parallel with the substrates, and the polymer 17 and the liquid crystal 18 are made a disposition state of forming angles on a plane parallel with the substrates, and thereby a scattering state is obtained.
    • 其目的是提供一种聚合物分散型液晶显示面板,其中获得高对比度和低驱动电压,散射性能优异。聚合物分散型液晶显示面板包括一对基板10,11,聚合物 包括液晶18和液晶聚合物17的分散型液晶层12,驱动电极7和相对电极8.驱动电极7和相对电极8形成在下基板11上,电场为 与上述下基板11大致平行地施加。在不施加电压的情况下,上述液晶18和与构成界面的液晶相邻的聚合物17在大致相同的方向上排列在 根据基板的取向处理与基板平行的平面,从而获得透明状态。 在电压施加下,液晶18在与基板平行的平面上旋转,聚合物17和液晶18成为在与基板平行的平面上形成角度的配置状态,从而散射状态为 获得。