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Ordered Mesoporous SnO2—Based Photoanodes for High-Performance Dye-Sensitized Solar Cells

机译:用于高性能染料敏化太阳能电池的有序中孔SnO2的光桥

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摘要

Ordered mesoporous SnO2 with three-dimensional bicontinuous cubic mesostructure, high surface area, and crystalline frameworks was synthesized by the solvent-free infiltration of tin precursor in KIT-6 silica template and employed as a photoanode in dye-sensitized solar cells (DSSCs). It is shown that coating an ultrathin TiO2 or Al2O3 layer on mesoporous SnO2 photoanode greatly improves the open-circuit voltage, short-circuit current, and fill factor, leading to more than a 3-fold improvement in the energy conversion efficiency. The superior photovoltaic performance of surface modified mesoporous SnO2 photoanode is mainly the result of inhibited electron recombination caused by passivation of reactive surface states and increased dye loading. Control cells fabricated with conventional nanoparticle SnO2/TiO2 photoanode exhibit a similar trend but with about 30% lower energy conversion efficiency, which is mainly because of limitations due to low dye loading and poor light scattering.
机译:通过试剂盒-6二氧化硅模板中的锡前体的无溶剂渗透,合成了具有三维双周末立方体模拟,高表面积和结晶框架的介孔SnO2,并用作染料敏化太阳能电池(DSSCs)的光氧末。 结果表明,在介孔的SnO2光电码上涂覆超薄TiO2或Al2O3层大大提高了开路电压,短路电流和填充因子,导致能量转换效率的提高超过3倍。 表面改性介孔SnO2光电码的卓越光伏性能主要是由反应性表面状态钝化和染料负荷增加引起的电子重组的结果。 用常规纳米颗粒SnO2 / TiO2光电码制造的对照细胞表现出类似的趋势,但能量转换效率降低约30%,这主要是由于由于低染料负载和差的光散射而受到限制。

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