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    • 3. 发明申请
    • Multi-layer film electrode structure and its preparation
    • 多层膜电极结构及其制备
    • US20090104428A1
    • 2009-04-23
    • US12078545
    • 2008-04-01
    • Jen-Chieh ChungYu-Zhen ZengYu-Chang Liu
    • Jen-Chieh ChungYu-Zhen ZengYu-Chang Liu
    • B32B3/26B05D5/12
    • H01G9/2031H01G9/2059H01L2251/306Y02E10/542Y10T428/249988
    • The present invention discloses a multi-layer film electrode structure and a method preparing the same, the multi-layer film electrode comprises a substrate and three layers titania film formed from three kinds titania slurry having different properties; respectively, in which the first layer film is formed from fine titania slurry obtained by subjecting titanium alkoxide to a sol-gel reaction in an alcohol solvent, the second layer film is formed from a porous nanometer titania slurry obtained by subjecting titanium alkoxide to acidic hydrolysis in an alcohol solvent, and the third layer film is formed from a hybrid titania mixture slurry obtained by mixing the porous nanometer titania slurry with commercial available titania and metal oxide powder. The multi-layer film electrode structure of the present invention can enhance the adhesion between the titania film and the substrate and increase a light-power conversion efficiency of sensitive solar cell when it applies in solar cell field.
    • 本发明公开了一种多层膜电极结构及其制备方法,所述多层膜电极包括由具有不同性质的三种二氧化钛浆料形成的基板和三层二氧化钛膜; 其中第一层膜由通过在醇溶剂中进行溶胶 - 凝胶反应得到的细二氧化钛浆料形成,第二层膜由通过使烷氧基钛进行酸性水解而获得的多孔纳米二氧化钛浆料形成 在醇溶剂中,并且通过将多孔纳米二氧化钛浆料与市售的二氧化钛和金属氧化物粉末混合而获得的混合二氧化钛混合物浆料形成第三层膜。 本发明的多层膜电极结构可以提高二氧化钛膜和基板之间的粘合性,并且在太阳能电池领域中提高敏感太阳能电池的光功率转换效率。