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    • 3. 发明公开
    • 유기 발광 표시 장치 및 그 제조 방법
    • 有机发光显示装置及其制造方法
    • KR1020140013514A
    • 2014-02-05
    • KR1020120080802
    • 2012-07-24
    • 삼성디스플레이 주식회사
    • 이영산김건식조영미채경찬
    • H01L51/50H01L51/56
    • H01L51/524H01L51/5253H01L51/56H01L21/02164H01L33/52H01L51/0533H01L2251/558
    • The present invention relates to an organic light emitting display and a manufacturing method of the same which comprises: a substrate, an organic light emitting element formed on the substrate; a thin film encapsulation layer formed on the organic light emitting element and covers the organic light emitting element; and a barrier layer disposed in between the organic light emitting element and the thin film encapsulation layer. The barrier layer comprises a first barrier layer, formed on the organic light emitting element, which includes compounds containing alkali metals, and a second barrier layer, disposed in between the first barrier layer and the thin film encapsulation layer, which includes amorphous inorganic oxides. [Reference numerals] (121) First electrode; (122) Organic light emitting layer; (123) Second electrode; (130) Camping layer; (141) First barrier layer; (142) Second barrier layer; (151) Inorganic layer; (152) Organic layer
    • 有机发光显示器及其制造方法技术领域本发明涉及一种有机发光显示器及其制造方法,其包括:基板,形成在所述基板上的有机发光元件; 形成在有机发光元件上并覆盖有机发光元件的薄膜封装层; 以及设置在有机发光元件和薄膜封装层之间的阻挡层。 阻挡层包括形成在有机发光元件上的第一阻挡层,其包含含有碱金属的化合物,以及第二阻挡层,其设置在第一阻挡层和薄膜封装层之间,该第二阻挡层包括无定形无机氧化物。 (附图标记)(121)第一电极; (122)有机发光层; (123)第二电极; (130)野营层; (141)第一阻挡层; (142)第二阻挡层; (151)无机层; (152)有机层
    • 4. 发明公开
    • 유기전계발광표시장치
    • 有机发光显示装置
    • KR1020100052805A
    • 2010-05-20
    • KR1020080111666
    • 2008-11-11
    • 엘지디스플레이 주식회사
    • 정영효강경민서창기
    • H05B33/22H01L51/50
    • H01L51/0533H01L21/76804H01L29/41766H01L29/6656
    • PURPOSE: An organic electroluminescent display device is provided to prevent particles like a floating matter from adhering or depositing in a partition wall when an organic light emitting layer and an upper electrode is deposited on a lower electrode by changing a structure of a partition wall. CONSTITUTION: A partition wall(125) is formed into a reverse tapered shape which has a broad upper area than a lower area. The partition wall comprises a depressed first patterned part(P1) and a second patterned part(P2) in order to isolate the inside of a center region. The second patterned part is patterned in order to expose a part of a base part(123a) located in the lower part of the partition wall. The partition wall has the shape classified into a first partition wall(125a) and a second partition wall(125b). A width formed by the first patterned part is larger than the width formed by the second patterned part.
    • 目的:提供一种有机电致发光显示装置,用于通过改变分隔壁的结构,通过在有机发光层和上电极沉积在下电极上时,防止浮游物质等颗粒粘附或沉积在隔壁中。 构成:分隔壁(125)形成为具有比下部区域宽的上部区域的倒锥形形状。 分隔壁包括凹陷的第一图案化部分(P1)和第二图案化部分(P2),以隔离中心区域的内部。 图案化第二图案部分以暴露位于分隔壁下部的基部(123a)的一部分。 分隔壁具有分为第一分隔壁(125a)和第二分隔壁(125b)的形状。 由第一图案化部分形成的宽度大于由第二图案部分形成的宽度。
    • 7. 发明公开
    • 표면상의 결정 화합물의 패턴화
    • 在表面上形成晶体结构化合物
    • KR1020090007284A
    • 2009-01-16
    • KR1020087020958
    • 2007-02-14
    • 바스프 에스이더 보드 어브 트러스티스 어브 더 리랜드 스탠포드 주니어 유니버시티
    • 고메즈,마르코스에르크,페터리흐터,프라우케바오,제난리우,슈홍
    • H01L51/05
    • H01L51/0003B82Y10/00B82Y30/00B82Y40/00G03F7/0002H01L51/0019H01L51/0068H01L51/0533H01L51/0545
    • A method of patterning the surface of a substrate with at least one organic semiconducting compound, comprising the steps of: (a) providing a stamp having a surface including a plurality of indentations formed therein defining an indentation pattern, said indentations being contiguous with a stamping surface and defining a stamping pattern, (b) coating said stamping surface with at least one compound (C1) capable of binding to the surface of the substrate and of binding at least one organic semiconducting compound (S), (c) contacting at least a portion of the surface of a substrate with said stamping surface to allow deposition of said compound (C1) on the substrate, (d) removing said stamping surface to provide a pattern of binding sites on the surface of the substrate, (e) applying a plurality of crystallites of the organic semiconducting compound (S) to the surface of the substrate to enable at least a portion of the applied crystallites to bind to at least a portion of the binding sites on the surface of the substrate.
    • 一种利用至少一种有机半导体化合物对衬底表面进行图案化的方法,包括以下步骤:(a)提供具有表面的印模,所述印模具有形成在其中的多个凹口,所述凹陷限定凹陷图案,所述凹口与冲压 表面和限定冲压图案,(b)用至少一种能够结合至基材表面并结合至少一种有机半导体化合物(S)的化合物(C1)涂覆所述冲压表面,(c)至少接触 具有所述冲压表面的衬底的表面的一部分,以允许将所述化合物(C1)沉积在衬底上,(d)去除所述冲压表面以提供衬底表面上的结合位点图案,(e)施加 多个微晶的有机半导体化合物(S)到基底的表面,使得至少一部分所施加的微晶能够结合至少一部分结合物 基材表面的部位。
    • 8. 发明公开
    • 평판표시장치 및 그의 제조방법
    • 平板显示器及其制造方法
    • KR1020070005396A
    • 2007-01-10
    • KR1020050060715
    • 2005-07-06
    • 삼성에스디아이 주식회사
    • 서민철안택
    • H05B33/10
    • H01L51/0533H01L27/3274H01L51/0537H01L51/102H01L2924/12044
    • A flat panel display and a fabrication method thereof are provided to simplify a process and a structure of a device by forming an aperture defining a pixel on a gate insulation film used as a pixel separation film by using a laser ablation method. A source/drain electrode(121,125), a pixel electrode and a semiconductor layer(130) contacted with the source/drain electrode are formed on a substrate(110). An insulation film is formed on the substrate. An aperture defining a pixel electrode is formed, by etching an insulation film on a part corresponding to the pixel electrode through a laser ablation process. A gate is formed on the gate insulation film corresponding to the semiconductor layer.
    • 提供了一种平板显示器及其制造方法,通过使用激光烧蚀方法,通过在用作像素分离膜的栅绝缘膜上形成限定像素的孔来简化器件的工艺和结构。 在基板(110)上形成源极/漏极(121,125),像素电极和与源极/漏极接触的半导体层(130)。 在基板上形成绝缘膜。 通过激光烧蚀工艺在对应于像素电极的部分上蚀刻绝缘膜,形成限定像素电极的孔。 在对应于半导体层的栅极绝缘膜上形成栅极。