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光阳极与敏化剂之间的石墨烯对分子内和分子间电子转移过程的影响。

Effect of graphene between photoanode and sensitizer on the intramolecular and intermolecular electron transfer process.

作者信息

Wang Xiaofei, Li Yuanzuo, Song Peng, Ma Fengcai, Yang Yanhui

机构信息

College of Science, Northeast Forestry University, Harbin 150040, Heilongjiang, China.

出版信息

Phys Chem Chem Phys. 2020 Mar 21;22(11):6391-6400. doi: 10.1039/c9cp06543a. Epub 2020 Mar 6.

Abstract

The main goal of this work is to investigate the effects of a graphene layer between the photosensitive layer and semiconductor substrates on the electron transport performance of dye-sensitized solar cells from the perspective of intramolecular arrangement and interfaces. The benzothiadiazole sensitizer YKP-88 is used as the photosensitive layer and the influence of the graphene layer on the short-circuit current density (J) and open-circuit voltage (V) is also discussed by exploring the frontier molecular orbitals, intramolecular charge transfer, weak interaction, interfacial electron dynamic propagations and other microscopic parameters after the anchoring of the graphene layer. The results demonstrate that the graphene layer can accelerate the electron injection of dye molecules into the semiconductor substrate, which not only has a qualitative reduction in injection time, but also has a qualitative change in the increase of the injection amount. In addition, it is also found that the graphene layer increases the stereoscopic effect, the absorption of long wavelength (>700 nm) photon flu and the amount of electron injection into the photoanode, which benefits the intramolecular charge transfer and increases the J and V of solar cells. The combination of intermolecular and interfacial perspectives indicates that the appropriate configuration of graphene layers can effectively improve the photoelectric conversion efficiency of dye-sensitized solar cells.

摘要

这项工作的主要目标是从分子内排列和界面的角度研究光敏层与半导体衬底之间的石墨烯层对染料敏化太阳能电池电子传输性能的影响。使用苯并噻二唑敏化剂YKP - 88作为光敏层,并通过探索石墨烯层锚定后的前沿分子轨道、分子内电荷转移、弱相互作用、界面电子动态传播等微观参数,讨论石墨烯层对短路电流密度(J)和开路电压(V)的影响。结果表明,石墨烯层可以加速染料分子向半导体衬底的电子注入,这不仅在注入时间上有定性的减少,而且在注入量增加方面也有定性的变化。此外,还发现石墨烯层增加了立体效应、长波长(>700 nm)光子通量的吸收以及向光阳极的电子注入量,这有利于分子内电荷转移并增加太阳能电池的J和V。分子间和界面角度的结合表明,石墨烯层的适当配置可以有效提高染料敏化太阳能电池的光电转换效率。

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