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    • 68. 发明授权
    • Organic electroluminescent element, organic electroluminescent display device, organic electroluminescent illuminating device, and method for manufacturing organic electroluminescent element
    • 有机电致发光元件,有机电致发光显示装置,有机电致发光照明装置以及有机电致发光元件的制造方法
    • US08729596B2
    • 2014-05-20
    • US13389244
    • 2010-04-22
    • Yoshimasa Fujita
    • Yoshimasa Fujita
    • H01L33/00
    • H01L51/5052H01L2251/5346H05B33/10
    • An organic electroluminescent element comprising: an anode (3); a cathode (4); and an organic layer (5), sandwiched between the anode (3) and the cathode (4), which contains a positive and negative charge transporting material, the organic layer (5) including an acceptor region (6) doped with an acceptor, a donor region (8) doped with a donor, and a light-emitting region (7) doped with an organic light-emitting material, the acceptor region (6) being located on the anode (3), the donor region (8) being located on the cathode (4), the light-emitting region (7) being located between the acceptor region (6) and the donor region (8), the acceptor having such a concentration gradient in the acceptor region (6) as to become lower in concentration from the anode (3) toward the light-emitting region (7), the donor having such a concentration gradient in the donor region (8) as to become lower in concentration from the cathode (4) toward the light-emitting region (7). This makes it possible to provide a simple-structured, high-luminance, high-efficiency, and long-life organic EL element.
    • 一种有机电致发光元件,包括:阳极(3); 阴极(4); 和包含正负电荷输送材料的阳极(3)和阴极(4)之间的有机层(5),所述有机层(5)包括掺杂有受主的受主区域(6) 掺杂有供体的供体区域(8)和掺杂有机发光材料的发光区域(7),所述受体区域(6)位于所述阳极(3)上,所述供体区域(8) 位于阴极(4)上的发光区域(7)位于受体区域(6)和施主区域(8)之间,受体在受体区域(6)中具有这样的浓度梯度,至 从阳极(3)朝向发光区域(7)的浓度变低,供体在供体区域(8)中具有从阴极(4)朝向发光区域(7)的浓度变低的浓度梯度, 发射区域(7)。 这使得可以提供简单结构的,高亮度,高效率和长寿命的有机EL元件。
    • 69. 发明申请
    • EVAPORATING METHOD FOR FORMING THIN FILM
    • 用于形成薄膜的蒸发方法
    • US20140017395A1
    • 2014-01-16
    • US14029781
    • 2013-09-17
    • Samsung Display Co., Ltd.
    • Ji-Hwan YoonKwan-Hee LeeJae-Hyun KwakDong-Hun KimMin-Seung ChunJung-Ha Son
    • H05B33/10
    • H05B33/10C23C14/12C23C14/24C23C14/243H01L2251/5346H01L2251/5384
    • A method of forming a film on a substrate includes depositing first and second evaporating source materials respective from first and second evaporating sources onto the substrate while moving the evaporating sources together with respect to the substrate, the first and second evaporating source materials being different from each other and positioned to provide a non-overlapping deposition region of the first evaporating source material, an overlapping deposition region of the first and second evaporating source materials and a non-overlapping deposition region of the second source material such that when the evaporating sources are moved, a film is formed to include a first layer that is a deposition of only the first evaporating source material, a second layer that is a deposition of a mixture of the first evaporating source material and the second evaporating source material and a third layer that is a deposition of only the second source material.
    • 一种在衬底上形成膜的方法包括将第一和第二蒸发源相应于第一和第二蒸发源的第一和第二蒸发源材料沉积到衬底上,同时相对于衬底移动蒸发源,第一和第二蒸发源材料与每个 并且定位成提供第一蒸发源材料的不重叠的沉积区域,第一和第二蒸发源材料的重叠沉积区域和第二源材料的非重叠沉积区域,使得当蒸发源移动时 形成膜,以包括仅第一蒸发源材料的沉积的第一层,作为第一蒸发源材料和第二蒸发源材料的混合物沉积的第二层,以及第三层 仅沉积第二源材料。