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染料敏化太阳能电池中敏化剂分子结构-器件效率关系。

Sensitizer molecular structure-device efficiency relationship in dye sensitized solar cells.

机构信息

ICREA and Institute of Chemical Research of Catalonia, Av. Països Catalans 16, 43007 Tarragona, Spain.

出版信息

Chem Soc Rev. 2011 Mar;40(3):1635-46. doi: 10.1039/b920664g. Epub 2010 Nov 12.

Abstract

In the Dye Sensitized Solar Cell (DSSC) the dye sensitizer carries out the light harvesting function and is therefore crucial in determining overall cell efficiency. In addition, the dye sensitizer can influence many of the key electron transfer processes occurring at the TiO(2)/dye/electrolyte interface which also determine efficiency. Dye structure can influence and drive forward electron injection into the conduction band of the TiO(2). Conversely, dye structure can help retard loss electron transfer processes such as charge recombination of injected electrons in the TiO(2) with dye cations and also recombination of these electrons with the electrolyte. Therefore tuning dye sensitizer light absorbing properties and control of the aforementioned electron transfer processes through structural design of the dye sensitizer is an important avenue through which optimization of DSSC efficiency should be pursued. In this critical review the latest work focusing on the design of dyes for efficient DSSCs is revised (111 references).

摘要

在染料敏化太阳能电池(DSSC)中,染料敏化剂执行光捕获功能,因此在确定整体电池效率方面至关重要。此外,染料敏化剂可以影响在 TiO(2)/染料/电解质界面处发生的许多关键电子转移过程,这些过程也决定了效率。染料结构可以影响并推动电子注入 TiO(2)导带。相反,染料结构可以帮助减缓电子转移过程的损失,例如 TiO(2)中的注入电子与染料阳离子的电荷复合,以及这些电子与电解质的复合。因此,通过染料敏化剂的结构设计来调整染料敏化剂的光吸收特性和控制上述电子转移过程是优化 DSSC 效率的重要途径。在这篇重要评论中,修订了(111 篇参考文献)聚焦于高效 DSSC 染料设计的最新工作。

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