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Progress in nanostructured photoanodes for dye-sensitized solar cells

机译:染料敏化太阳能电池纳米结构光阳极的研究进展

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摘要

Solar cells represent a principal energy technology to convert light into electricity. Commercial solar cells are at present predominately produced by single- or multi-crystalline silicon wafers. The main drawback to silicon-based solar cells, however, is high material and manufacturing costs. Dye-sensitized solar cells (DSSCs) have attracted much attention during recent years because of the low production cost and other advantages. The photoanode (working electrode) plays a key role in determining the performance of DSSCs. In particular, nanostructured photoanodes with a large surface area, high electron transfer efficiency, and low electron recombination facilitate to prepare DSSCs with high energy conversion efficiency. In this review article, we summarize recent progress in the development of novel photoanodes for DSSCs. Effect of semiconductor material (e.g. TiO2, ZnO, SnO2, N2O5, and nano carbon), preparation, morphology and structure (e.g. nanoparticles, nanorods, nanofibers, nanotubes, fiber/particle composites, and hierarchical structure) on photovoltaic performance of DSSCs is described. The possibility of replacing silicon-based solar cells with DSSCs is discussed.
机译:太阳能电池代表了一种将光能转化为电能的主要能源技术。目前,商用太阳能电池主要由单晶或多晶硅晶片生产。然而,硅基太阳能电池的主要缺点是高材料和制造成本。染料敏化太阳能电池(DSSC)近年来因其低廉的生产成本和其他优势而备受关注。光电阳极(工作电极)在决定DSSC的性能方面起着关键作用。特别地,具有大表面积,高电子传递效率和低电子复合的纳米结构的光阳极有助于制备具有高能量转换效率的DSSC。在这篇评论文章中,我们总结了DSSC新型光阳极开发的最新进展。描述了半导体材料(例如TiO2,ZnO,SnO2,N2O5和纳米碳),制备,形态和结构(例如纳米颗粒,纳米棒,纳米纤维,纳米管,纤维/颗粒复合物以及层次结构)对DSSC光伏性能的影响。 。讨论了用DSSC替代硅基太阳能电池的可能性。

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