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用于染料敏化太阳能电池的含二阴离子三齿配体的新型钌敏化剂:太阳能电池性能与配体上取代基吸电子能力之间的关系。

Novel ruthenium sensitizers with a dianionic tridentate ligand for dye-sensitized solar cells: the relationship between the solar cell performances and the electron-withdrawing ability of substituents on the ligand.

作者信息

Ozawa Hironobu, Honda Shunsuke, Katano Daichi, Sugiura Takahito, Arakawa Hironori

机构信息

Department of Industrial Chemistry, Faculty of Engineering, Tokyo University of Science, 12-1, Ichigaya-Funagawara, Shinjuku, Tokyo 162-0826, Japan.

出版信息

Dalton Trans. 2014 Jun 7;43(21):8026-36. doi: 10.1039/c3dt52873a. Epub 2014 Apr 9.

Abstract

Five novel ruthenium sensitizers (TUS sensitizers) with a dianionic tridentate ligand (pyridine-2,6-dicarboxyamidato and its derivatives) have been synthesized for application to dye-sensitized solar cells (DSCs). These TUS sensitizers have much larger molar absorption coefficients in the wavelength range below 600 nm compared with those of Black dye which is a structural analog and a highly efficient ruthenium sensitizer. The energy levels of HOMOs and LUMOs of TUS sensitizers shifted to the positive direction with increasing the electron-withdrawing ability of the substituents on the dianionic tridentate ligand. The energy levels of HOMO and LUMO showed linear correlation with respect to the Hammett constant of the substituents. The DSCs with TUS sensitizers showed much lower performances than that of Black dye. Both inferior adsorptivity on the TiO2 surface and unfavorable energy levels of HOMOs and LUMOs for the effective electron transfer reactions in the DSCs are considered to be the main reasons for the much lower performances of TUS sensitizers. The conversion efficiency of the DSC with a TUS sensitizer increased with increasing the electron-withdrawing ability of the substituents on the dianionic tridentate ligand. The observed linear relationship between the conversion efficiency and the driving force of the reduction process of the oxidized form of dyes by I(-) suggests that the dye regeneration process is a rate-determining step in the DSCs with TUS sensitizers.

摘要

已合成了五种带有双阴离子三齿配体(吡啶 - 2,6 - 二甲酰胺基及其衍生物)的新型钌敏化剂(TUS敏化剂),用于染料敏化太阳能电池(DSC)。与结构类似且高效的钌敏化剂黑色染料相比,这些TUS敏化剂在600 nm以下波长范围内具有大得多的摩尔吸收系数。随着双阴离子三齿配体上取代基吸电子能力的增强,TUS敏化剂的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能级向正向移动。HOMO和LUMO的能级与取代基的哈米特常数呈线性相关。含有TUS敏化剂的DSC表现出比黑色染料低得多的性能。TiO₂ 表面吸附性较差以及DSC中有效电子转移反应的HOMO和LUMO能级不利,被认为是TUS敏化剂性能低得多的主要原因。含有TUS敏化剂的DSC的转换效率随着双阴离子三齿配体上取代基吸电子能力的增强而提高。观察到的转换效率与I⁻ 对染料氧化形式还原过程驱动力之间的线性关系表明,染料再生过程是含有TUS敏化剂的DSC中的速率决定步骤。

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