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首页> 外文期刊>Nanoscale >A facile method to prepare SnO2 nanotubes for use in efficient SnO2-TiO2 core-shell dye-sensitized solar cells
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A facile method to prepare SnO2 nanotubes for use in efficient SnO2-TiO2 core-shell dye-sensitized solar cells

机译:一个简单的方法来准备SnO2纳米管使用在高效SnO2-TiO2核壳涂料太阳能电池

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摘要

A high-efficiency photoelectrode for dye-sensitized solar cells (DSSCs) should combine the advantageous features of fast electron transport, slow interfacial electron recombination and large specific surface area. However, these three requirements usually cannot be achieved simultaneously in the present state-of-the-art research. Here we report a simple procedure to combine the three conflicting requirements by using porous SnO2 nanotube-TiO2 (SnO2 NT-TiO2) core-shell structured photoanodes for DSSCs. The SnO2 nanotubes are prepared by electrospinning of polyvinyl pyrrolidone (PVP)/tin dichloride dihydrate (SnCl2-2H2O) solution followed by direct sintering of the as-spun nanofibers. A possible evolution mechanism is proposed. The power conversion efficiency (PCE) value of the SnO2 NT-TiO2 core-shell structured DSSCs (~5.11%) is above five times higher than that of SnO2 nanotube (SnO2 NT) DSSCs (~0.99%). This PCE value is also higher than that of TiO2 nanoparticles (P25) DSSCs (~4.82%), even though the amount of dye molecules adsorbed to the SnO2 NT-TiO2 photoanode is less than half of that in the P25 film. This simple procedure provides a new approach to achieve the three conflicting requirements simultaneously, which has been demonstrated as a promising strategy to obtain high-efficiency DSSCs.
机译:一个高效的光电极涂料太阳能电池(DSSCs)应该结合起来快电子的优越特性运输、缓慢的界面电子重组和大比表面积。然而,这三个需求通常不能同时实现在当下最先进的研究。合并这三个矛盾的简单程序要求使用多孔SnO2 nanotube-TiO2(SnO2 NT-TiO2)核壳结构光电阳极DSSCs。电纺的聚乙烯吡咯烷酮的(PVP) /二氯化锡二水合物(SnCl2-2H2O)解决方案的直接烧结紧随其后纺纳米纤维。提出了机制。效率(PCE)的价值SnO2 NT-TiO2核壳结构DSSCs (~ 5.11%)5倍的SnO2纳米管(SnO2 NT) DSSCs(~ 0.99%)。高于二氧化钛纳米颗粒(P25)DSSCs(~ 4.82%),尽管染料的量分子吸附对SnO2 NT-TiO2光电阳极在P25小于一半的电影。简单的程序提供了一种新方法实现三个相互冲突的需求同时,它已被证明是一个有前途的战略获得高效

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