전기전도성 폴리피롤막을 함유하는 반사형 액정표시소자
    42.
    发明授权
    전기전도성 폴리피롤막을 함유하는 반사형 액정표시소자 失效
    具有导电聚合物的反射LCD

    公开(公告)号:KR100265062B1

    公开(公告)日:2000-09-01

    申请号:KR1019970025596

    申请日:1997-06-19

    Abstract: PURPOSE: A reflective liquid crystal display device is to include a polypyrrole film capable of replacing an electrode layer, a light absorbing layer and a liquid crystal alignment layer of the liquid crystal display device. CONSTITUTION: The liquid crystal display device includes an upper glass substrate(2), a lower glass substrate(12) opposed to the upper glass substrate, a transparent electrode film(4) applied on an inner surface of the upper glass substrate, and a liquid crystal alignment film(6) formed on the transparent electrode film, an electrical conductive polypyrrole film(10) formed on an inner surface of the lower glass substrate, and a liquid crystal layer(8) disposed between the electrical conductive polypyrrole film and the liquid crystal alignment film. If the liquid crystal in the liquid crystal layer is in a planar state, the polypyrrole film reflects a visible ray of a specific wavelength, so that the reflected color is viewable.

    Abstract translation: 目的:反射型液晶显示装置包括能够替代液晶显示装置的电极层,光吸收层和液晶取向层的聚吡咯膜。 构成:液晶显示装置包括上玻璃基板(2),与上玻璃基板相对的下玻璃基板(12),涂布在上玻璃基板的内表面的透明电极膜(4),以及 形成在透明电极膜上的液晶取向膜(6),形成在下部玻璃基板的内表面上的导电性聚吡咯膜(10)和设置在导电性聚吡咯膜和 液晶取向膜。 如果液晶层中的液晶处于平面状态,则聚吡咯膜反射特定波长的可见光线,使得反射颜色是可见的。

    태양전지용 전극의 제조방법
    45.
    发明公开
    태양전지용 전극의 제조방법 有权
    太阳能电池电极的制造方法

    公开(公告)号:KR1020110119434A

    公开(公告)日:2011-11-02

    申请号:KR1020100039139

    申请日:2010-04-27

    CPC classification number: Y02E10/549 Y02P70/521 H01L51/42 H01L31/18

    Abstract: PURPOSE: A method for manufacturing an electrode is provided to the manufacture a device with high crystallization by controlling the crystalline degree of a photoactive layer. CONSTITUTION: Spray solutions are made by solving electron donor organic material and electron acceptor organic material in a solvent. A photoactive layer is formed by electrically spraying spray solutions on a glass substrate with a transparent electrode. A mixing ratio of an electron donor organic material and an electron acceptor organic material is 9:1 or 1:9. The crystalline degree of the photoactive layer is controlled. A band gap of the electron donor organic material is 2.5 to 0.8 eV.

    Abstract translation: 目的:通过控制光活性层的结晶度,为制造具有高结晶度的装置提供电极制造方法。 构成:通过在溶剂中溶解电子给体有机材料和电子受体有机材料制成喷雾溶液。 通过在具有透明电极的玻璃基板上喷射喷雾溶液来形成光敏层。 电子给体有机材料和电子受体有机材料的混合比为9:1或1:9。 控制光敏层的结晶度。 电子给体有机材料的带隙为2.5至0.8eV。

    리빙 고분자로 그라프트되어 개질된 탄소나노튜브를 이용한 염료감응형 태양전지 전극 및 그 제조 방법
    46.
    发明公开
    리빙 고분자로 그라프트되어 개질된 탄소나노튜브를 이용한 염료감응형 태양전지 전극 및 그 제조 방법 失效
    由生物聚合物,碳纳米管电极和使用其的透明的太阳能电池制备的改性碳纳米管及其制备方法

    公开(公告)号:KR1020100039136A

    公开(公告)日:2010-04-15

    申请号:KR1020080098371

    申请日:2008-10-07

    Abstract: PURPOSE: A modified carbon nanotube, a manufacturing method thereof, a carbon nanotube electrode including the same, and a dye-sensitized solar cell including the same are provided to manufacture a carbon nanotube layer of a thinner thickness due to excellent dispersibility and to obtain excellent catalytic action by improving cohesive power and relative density of the carbon nanotube. CONSTITUTION: A modified carbon nanotube is the carbon nanotube in which a polymer with a living radical terminal group is chemically combined through a radical graft reaction. A method for manufacturing the modified carbon nanotube comprises the following steps: preparing the polymer which is synthesized by a living radical polymerization of an unsaturated monomer and has the living radical terminal group; and chemically combining the polymers with the carbon nanotube through the radical graft reaction.

    Abstract translation: 目的:提供改性碳纳米管,其制造方法,包含该碳纳米管电极的碳纳米管电极和包含该碳纳米管电极的染料敏化太阳能电池,由于分散性优异,制造厚度较薄的碳纳米管层, 通过提高碳纳米管的内聚力和相对密度的催化作用。 构成:改性碳纳米管是其中具有活性基团末端基团的聚合物通过自由基接枝反应化学结合的碳纳米管。 制造改性碳纳米管的方法包括以下步骤:制备通过不饱和单体的活性自由基聚合合成并具有活性基团末端基团的聚合物; 并通过自由基接枝反应将聚合物与碳纳米管化学结合。

    졸-겔 및 광경화 반응에 의해 광경화 투명고분자 내에금속산화물 나노입자를 포함하는 게이트 절연층을 이용한유기박막 트랜지스터 및 그의 제조방법
    47.
    发明公开
    졸-겔 및 광경화 반응에 의해 광경화 투명고분자 내에금속산화물 나노입자를 포함하는 게이트 절연층을 이용한유기박막 트랜지스터 및 그의 제조방법 有权
    在透明聚合物门绝缘体层中包含金属氧化物纳米颗粒的有机薄膜晶体管及其通过使用溶胶凝胶和光电反应来制备其的方法

    公开(公告)号:KR1020090082941A

    公开(公告)日:2009-08-03

    申请号:KR1020080008816

    申请日:2008-01-29

    CPC classification number: H01L51/0537 C01G1/02 C01G23/053 H01L51/0516

    Abstract: Organic thin film transistors comprising metal oxide nanoparticles within transparent polymer gate insulator layer and method for fabricating the same by using sol-gel and photocure reactions are provided to achieve a low voltage operation by using a transparency inorganic/polymer composite layer. The gate electrode(20) is formed on the glass substrates(10). The photocure transparency inorganic/polymer composite layer(30) including the substrate and the gate electrode metal oxide nano particle is formed. The organic active layer(40) is formed on the photocure transparency inorganic/polymer composite layer. Source and drain electrodes(50,60) are formed on the organic active layer. The photocure transparency inorganic/polymer composite layer mixes the metal oxide precursor, the reactivity controller, and catalyst and photocure polymer. The mixture is coated on the substrate.

    Abstract translation: 提供了包含透明聚合物栅绝缘体层内的金属氧化物纳米粒子的有机薄膜晶体管及其制造方法,通过使用透明无机/聚合物复合层来实现低电压工作。 栅电极(20)形成在玻璃基板(10)上。 形成包含基板和栅电极金属氧化物纳米粒子的光固化透明性无机/聚合物复合层(30)。 在光固性透明无机/聚合物复合层上形成有机活性层(40)。 源极和漏极(50,60)形成在有机有源层上。 光固化透明无机/聚合物复合层混合金属氧化物前体,反应性控制剂,催化剂和光固化聚合物。 将混合物涂覆在基材上。

    초고감도 금속산화물 가스센서 및 그 제조방법
    49.
    发明公开
    초고감도 금속산화물 가스센서 및 그 제조방법 有权
    超声敏感金属氧化物气体传感器及其制作方法

    公开(公告)号:KR1020070066859A

    公开(公告)日:2007-06-27

    申请号:KR1020060113002

    申请日:2006-11-15

    CPC classification number: G01N27/127

    Abstract: An ultra-sensitive metal oxide gas sensor and a method for manufacturing the same are provided to maximize the diffusion of gas by providing macro pores between nano-fibers. An ultra-sensitive metal oxide gas sensor includes a sensor electrode and a porous metal oxide thin film. The porous metal oxide thin film is formed on the sensor electrode and has a network structure of nano-fibers including nano-rods of single crystals. The average width of the single crystals is 10 to 20 nm and the average length thereof is 50 to 100 nm. The porous metal oxide thin film has first pores between the nano-fibers and second pores between the nano-rods. The average size of the first pores is 55 to 70nm and the average size of the second pores is 10 to 25nm.

    Abstract translation: 提供超敏感金属氧化物气体传感器及其制造方法,以通过在纳米纤维之间提供宏观孔来使气体的扩散最大化。 超敏感金属氧化物气体传感器包括传感器电极和多孔金属氧化物薄膜。 多孔金属氧化物薄膜形成在传感器电极上,并具有包括单晶纳米棒的纳米纤维的网络结构。 单晶的平均宽度为10〜20nm,平均长度为50〜100nm。 多孔金属氧化物薄膜在纳米纤维和纳米棒之间的第二孔之间具有第一孔。 第一孔的平均尺寸为55〜70nm,第二孔的平均尺寸为10〜25nm。

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