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    • 31. 发明申请
    • Method for fabricating organic electroluminescence device
    • 有机电致发光器件的制造方法
    • US20060063099A1
    • 2006-03-23
    • US11231750
    • 2005-09-22
    • Jae-Ho LeeTae-Min KangJin-Soo KimSeong-Taek Lee
    • Jae-Ho LeeTae-Min KangJin-Soo KimSeong-Taek Lee
    • H01J9/227
    • H01L51/5012B23K26/066H01L51/0013
    • The present invention provides a method for fabricating an organic electroluminescence device comprising forming an organic layer on the substrate by irradiating a laser beam onto a predetermined region of a donor substrate by a laser irradiation apparatus equipped with a diffractive optical element. A method for fabricating an organic electroluminescence device according to the present invention has merits that energy efficiency of a laser beam is improved by using a diffractive optical element when forming an organic film layer pattern by LITI, and fabrication process of the organic electroluminescence device is simplified and fabrication cost of the organic electroluminescence device is reduced by replacing a mask only when forming a laser beam having various shapes to fabricate the organic electroluminescence device.
    • 本发明提供了一种制造有机电致发光器件的方法,包括通过用配备有衍射光学元件的激光照射设备将激光束照射到施主衬底的预定区域上而在衬底上形成有机层。 根据本发明的制造有机电致发光器件的方法的优点在于,通过利用LITI形成有机膜层图案时通过使用衍射光学元件来提高激光束的能量效率,简化了有机电致发光器件的制造工艺 并且通过仅在形成具有各种形状的激光束时更换掩模来制造有机电致发光器件来降低有机电致发光器件的制造成本。
    • 39. 发明授权
    • Method for fabricating organic electroluminescent display
    • 制造有机电致发光显示器的方法
    • US06936300B2
    • 2005-08-30
    • US09935332
    • 2001-08-23
    • Seong Taek LeeJang Hyuk KwonTae Min KangJoon Young Park
    • Seong Taek LeeJang Hyuk KwonTae Min KangJoon Young Park
    • H05B33/10H01L51/00H01L51/40B05D5/06B05D5/12
    • H01L51/0009
    • Relating to a method for fabricating an organic electroluminescent display having improved surface flatness and thickness uniformity as well as an improved image quality at edge regions of a pattern, a method for fabricating an organic electroluminescent display includes the steps of: forming a first electrode layer on a transparent substrate, the first electrode layer being a positive electrode; forming an assistant layer on the first electrode layer; forming an organic luminescent layer on the assistant layer by scanning a donor film using a laser beam, the donor film being disposed on the substrate having luminescent materials for R, G, and B; removing the donor film; and forming a second electrode layer on the organic luminescent layer, the second electrode layer being a negative electrode, wherein the step of forming an organic luminescent layer comprises the step of dithering the laser beam in a direction perpendicular to a scanning direction of the laser beam.
    • 关于制造具有改善的表面平坦度和厚度均匀性的有机电致发光显示器的方法以及在图案的边缘区域的改进的图像质量,有机电致发光显示器的制造方法包括以下步骤:形成第一电极层 透明基板,所述第一电极层为正极; 在所述第一电极层上形成辅助层; 通过使用激光束扫描施主膜,在辅助层上形成有机发光层,施主膜设置在具有用于R,G和B的发光材料的基板上; 去除供体膜; 以及在所述有机发光层上形成第二电极层,所述第二电极层为负极,其中形成有机发光层的步骤包括使所述激光束沿垂直于所述激光束的扫描方向的方向抖动的步骤 。
    • 40. 发明申请
    • Method of fabricating organic light emitting display device
    • 制造有机发光显示装置的方法
    • US20050186330A1
    • 2005-08-25
    • US11013944
    • 2004-12-17
    • Mu-Hyun KimByung-Doo ChinSeong-Taek Lee
    • Mu-Hyun KimByung-Doo ChinSeong-Taek Lee
    • H05B33/10B05D5/06B05D5/12H01L27/32H01L51/50H05B33/02H05B33/12H05B33/14H05B33/20H05B33/22H05B33/26
    • H01L51/0017H01L27/3211Y10S428/917
    • The present invention relates to a flat panel display, and more particularly, to a method of fabricating an organic light emitting display device so as to improve device characteristics by patterning a plurality of organic layers using a heat transfer method to optimize thicknesses according to R, G and B pixels. The method includes: forming lower electrodes of R, G and B pixels on an insulating substrate; forming an organic layer on the insulating substrate; and forming an upper electrode on the organic layer. Formation of the organic layer includes forming a hole injection layer and a hole transport layer of the R, G and B pixels on the entire surface of the substrate as a common layer. The R and G emission layers are patterned by a heat transfer method using a heat transfer device having a transfer layer such that an organic layer is patterned to a thickness obtained by subtracting a thickness of the B emission layer from the thicknesses of the R and G emission layers required in R and G colors.
    • 本发明涉及一种平板显示器,更具体地说,涉及一种制造有机发光显示装置的方法,以便通过使用传热方法图案化多个有机层来提高器件特性以优化根据R的厚度, G和B像素。 该方法包括:在绝缘基板上形成R,G和B像素的下电极; 在所述绝缘基板上形成有机层; 并在有机层上形成上电极。 有机层的形成包括在基板的整个表面上形成R,G和B像素的空穴注入层和空穴传输层作为共同层。 通过使用具有转印层的传热装置的传热方法对R和G发射层进行图案化,使得有机层被图案化为通过从R和G的厚度减去B发射层的厚度获得的厚度 R和G颜色所需的发射层。