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Highly Efficient Quasi-solid State Flexible Dye-sensitized Solar Cells Using a Compression Method and Light-confined Effect for Preparation of TiO2 Photoelectrodes

机译:高效的准固态柔性染料敏化太阳能电池使用压缩方法和用于制备TiO2光电极的光限制效果

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A mesoporous nanocrystalline TiO2 film was prepared on a transparent conductive polymer (ITO/PEN, PEN = poly ethylene naphthalene-2, 6-dicarboxylate) through a doctor-blade method and then treated by static mechanical compression for enhancing the particles connection. Effect of TiO2 loading and dye sensitizing condition on the photovoltaic performance were first investigated with N719 sensitizer in combination with TiO2 solidified quasi-solid electrolyte. A solar cell with platinum-coated FTO glass counter electrode and ITO/PEN photoelectrode, prepared by an ethanol based binder-free TiO2 paste composed of a mixture of P25 (21nm, 25% rutile and 75% anatase) and 100 nm anatase TiO2 particles, yielded highest conversion efficiencies of 6.53% under 1 sun illumination.
机译:通过刮刀法在透明导电聚合物(ITO / PEN =聚乙烯萘)上制备介孔纳米晶TiO2膜,然后通过刮刀方法,然后通过静态机械压缩处理以增强颗粒连接。 TiO2加载和染料敏化条件对光伏性能的影响首先用N719敏化剂与TiO2凝固的准固体电解质组合研究。具有铂涂覆的FTO玻璃对电极和ITO / PEN光电极的太阳能电池,由由P25(21nM,25%金红石和75%锐钛矿)和100nM锐钛矿TiO 2颗粒的混合物组成的乙醇基粘合剂的TiO 2浆料制备,在1次太阳照明下产生最高转化效率为6.53%。

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