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TiO2 的掺杂用于敏化太阳能电池。

Doping of TiO2 for sensitized solar cells.

机构信息

Adolphe Merkle Institute, Rue des Verdiers, CH-1700 Fribourg, Switzerland.

出版信息

Chem Soc Rev. 2015 Nov 21;44(22):8326-49. doi: 10.1039/c5cs00352k. Epub 2015 Aug 28.

Abstract

This review gives a detailed summary and evaluation of the use of TiO2 doping to improve the performance of dye sensitized solar cells. Doping has a major effect on the band structure and trap states of TiO2, which in turn affect important properties such as the conduction band energy, charge transport, recombination and collection. The defect states of TiO2 are highly dependent on the synthesis method and thus the effect of doping may vary for different synthesis techniques, making it difficult to compare the suitability of different dopants. High-throughput methods may be employed to achieve a rough prediction on the suitability of dopants for a specific synthesis method. It was however found that nearly every employed dopant can be used to increase device performance, indicating that the improvement is not so much caused by the dopant itself, as by the defects it eliminates from TiO2. Furthermore, with the field shifting from dye sensitized solar cells to perovskite solar cells, the role doping can play to further advance this emerging field is also discussed.

摘要

本综述详细总结和评价了 TiO2 掺杂以提高染料敏化太阳能电池性能的应用。掺杂对 TiO2 的能带结构和陷阶态有重大影响,进而影响到重要性质,如导带能量、电荷输运、复合和收集。TiO2 的缺陷态高度依赖于合成方法,因此掺杂的效果可能因不同的合成技术而有所不同,这使得比较不同掺杂剂的适用性变得困难。高通量方法可用于对特定合成方法中掺杂剂的适用性进行粗略预测。然而,几乎每种所使用的掺杂剂都可以用于提高器件性能,这表明改进不是由掺杂剂本身引起的,而是由其消除 TiO2 中的缺陷引起的。此外,随着研究领域从染料敏化太阳能电池转移到钙钛矿太阳能电池,掺杂可以在进一步推进这一新兴领域中所起的作用也进行了讨论。

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