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Graphene-Based Transparent Electrodes for Dye Sensitized Solar Cells

机译:基于石墨烯的透明电极染料敏化太阳能电池

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Several Zinc Oxide (ZnO) photo-anodes were prepared with different morphologies. For each morphology, two composites containing graphene oxide (GO) were prepared. ZnO sheet-flowers attained the highest efficiency among control samples, owing to the light diffraction that may be caused by such morphology. On the other hand, ZnO rods achieved lower performance than ZnO sheet-flowers, but higher than ZnO flowers, due to their porosity and structure, which may scatter light effectively. The effect of including GO in the photoanode matrix was studied and the results demonstrate a significant increase in short circuit current density (J_(SC)). The addition of GO suggested an overall positive effect on cell performance, where samples of ZnO rods and Flowers had the most significant increase in their performance, due to the inhibition of charge recombination by GO.
机译:用不同的形态制备几种氧化锌(ZnO)光阳极。对于每个形态,制备含有石墨烯(GO)的两种复合材料。由于可能由这种形态引起的光衍射,ZnO片状呈现在对照样品中的最高效率。另一方面,由于它们的孔隙率和结构,ZnO棒的性能比ZnO片状花较低,而是比ZnO花朵高于ZnO花朵,这可能会有效地散射光。研究了包括Go在光电码矩阵的效果,结果表明短路电流密度的显着增加(J_(SC))。由于通过GO抑制,增加了对细胞性能的总体积极影响,其中ZnO棒和花的样本具有最显着的性能提高。

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