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    • 3. 发明申请
    • Liquid crystal display device and fabricating method thereof
    • 液晶显示装置及其制造方法
    • US20080129924A1
    • 2008-06-05
    • US11984989
    • 2007-11-26
    • Jeong Min MoonEun Ju Kim
    • Jeong Min MoonEun Ju Kim
    • G02F1/13357G02F1/1333
    • G02F1/133606G02F1/133604G02F1/133608
    • A liquid crystal display device that reduces manufacturing cost, contributes to a thin profile, and generates uniform brightness, and a fabricating method thereof are disclosed.In the liquid crystal display device, a liquid crystal display panel is prepared. A backlight includes a plurality of lamps, a diffusion plate which is located on the lamps, and an intermediate diffusion medium located between the lamps and the diffusion plate to diffuse light from the lamps, and irradiates light to the liquid crystal display panel.Furthermore, in the method of fabricating the liquid crystal display device, a diffusion material is molded using a mold to form an intermediate diffusion medium that includes a plurality of ribs connected to an external band of square type and both sides of the external band of square type, respectively. The intermediate diffusion medium is located between lamps and a diffusion plate.
    • 一种降低制造成本,有助于薄型化并产生均匀亮度的液晶显示装置及其制造方法。 在液晶显示装置中,准备液晶显示面板。 背光源包括多个灯,位于灯上的漫射板和位于灯和扩散板之间的中间扩散介质,用于漫射来自灯的光,并将光照射到液晶显示面板。 此外,在液晶显示装置的制造方法中,使用模具来形成扩散材料,以形成中间扩散介质,该中间扩散介质包括连接到正方形的外部带的多个肋和正方形的外部带的两侧 类型。 中间扩散介质位于灯和扩散板之间。
    • 5. 发明授权
    • Reinforced composite electrolyte membrane for fuel cell
    • 燃料电池用强化复合电解质膜
    • US09054357B2
    • 2015-06-09
    • US11729931
    • 2007-03-30
    • Eun Ju KimChong Kyu ShinBong Keun LeeSeong Ho Choi
    • Eun Ju KimChong Kyu ShinBong Keun LeeSeong Ho Choi
    • H01M6/18H01M8/10H01M8/04
    • H01M8/1053H01M8/04197H01M8/1007H01M8/1023H01M8/1025H01M8/1027H01M8/103H01M8/1032H01M8/1034H01M8/1039H01M8/1058H01M8/106H01M8/1062H01M8/1067H01M8/1081H01M2300/0082H01M2300/0088H01M2300/0094Y02E60/521Y02P70/56
    • Disclosed is a composite electrolyte membrane comprising a microporous polymer substrate and a sulfonated polymer electrolyte. The composite electrolyte membrane comprises: a first polymer electrolyte layer formed of a first non-fluorinated or partially-fluorinated sulfonated polymer electrolyte; a non-fluorinated or partially-fluorinated microporous polymer substrate stacked on the first polymer electrolyte layer, wherein pores of the microporous polymer substrate are impregnated with a second non-fluorinated or partially-fluorinated sulfonated polymer electrolyte, and the first polymer electrolyte and the second polymer electrolyte are entangled with each other on an interface thereof; and a third polymer electrolyte layer formed on the microporous polymer substrate impregnated with the second polymer electrolyte by a third non-fluorinated or partially-fluorinated sulfonated polymer electrolyte, wherein the second polymer electrolyte and the third polymer electrolyte are entangled with each other on an interface thereof. A method for manufacturing the composite electrolyte membrane, and a membrane-electrode assembly (MEA) and a fuel cell comprising the composite electrolyte membrane are also disclosed.
    • 公开了包含微孔聚合物基材和磺化聚合物电解质的复合电解质膜。 复合电解质膜包括:由第一非氟化或部分氟化的磺化聚合物电解质形成的第一聚合物电解质层; 堆叠在第一聚合物电解质层上的非氟化或部分氟化的微孔聚合物基材,其中微孔聚合物基材的孔用第二非氟化或部分氟化的磺化聚合物电解质浸渍,并且第一聚合物电解质和第二聚合物电解质 聚合物电解质在其界面上彼此缠结; 以及第三聚合物电解质层,其通过第三非氟化或部分氟化的磺化聚合物电解质在所述第二聚合物电解质浸渍的所述微孔聚合物基材上形成,其中所述第二聚合物电解质和所述第三聚合物电解质在界面上彼此缠结 其中。 还公开了复合电解质膜的制造方法以及膜电极组件(MEA)和包含该复合电解质膜的燃料电池。