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用于染料敏化太阳能电池的新型锌卟啉敏化剂:合成及其光谱、电化学和光伏性质

Novel zinc porphyrin sensitizers for dye-sensitized solar cells: synthesis and spectral, electrochemical, and photovoltaic properties.

作者信息

Lee Cheng-Wei, Lu Hsueh-Pei, Lan Chi-Ming, Huang Yi-Lin, Liang You-Ren, Yen Wei-Nan, Liu Yen-Chun, Lin You-Shiang, Diau Eric Wei-Guang, Yeh Chen-Yu

机构信息

Department of Chemistry, National Chung Hsing University, Taichung 402, Taiwan.

出版信息

Chemistry. 2009;15(6):1403-12. doi: 10.1002/chem.200801572.

Abstract

Novel meso- or beta-derivatized porphyrins with a carboxyl group have been designed and synthesized for use as sensitizers in dye-sensitized solar cells (DSSCs). The position and nature of a bridge connecting the porphyrin ring and carboxylic acid group show significant influences on the spectral, electrochemical, and photovoltaic properties of these sensitizers. Absorption spectra of porphyrins with a phenylethynyl bridge show that both Soret and Q bands are red-shifted with respect to those of porphyrin 6. This phenomenon is more pronounced for porphyrins 3 and 4, which have a pi-conjugated electron-donating group at the meso position opposite the anchoring group. Upon introduction of an ethynylene group at the meso position, the potential at the first oxidation alters only slightly whereas that for the first reduction is significantly shifted to the positive, thus indicating a decreased HOMO-LUMO gap. Quantum-chemical (DFT) results support the spectroelectrochemical data for a delocalization of charge between the porphyrin ring and the amino group in the first oxidative state of diarylamino-substituted porphyrin 5, which exhibits the best photovoltaic performance among all the porphyrins under investigation. From a comparison of the cell performance based on the same TiO(2) films, the devices made of porphyrin 5 coadsorbed with chenodeoxycholic acid (CDCA) on TiO(2) in ratios [5]/[CDCA] = 1:1 and 1:2 have efficiencies of power conversion similar to that of an N3-based DSSC, which makes this green dye a promising candidate for colorful DSSC applications.

摘要

已设计并合成了具有羧基的新型中位或β-衍生卟啉,用作染料敏化太阳能电池(DSSC)中的敏化剂。连接卟啉环和羧酸基团的桥的位置和性质对这些敏化剂的光谱、电化学和光伏性质有显著影响。具有苯乙炔基桥的卟啉的吸收光谱表明,与卟啉6相比,Soret带和Q带均发生红移。对于在与锚定基团相对的中位具有π共轭供电子基团的卟啉3和4,这种现象更为明显。在中位引入乙炔基后,第一次氧化时的电位仅略有变化,而第一次还原时的电位则显著向正方向移动,这表明HOMO-LUMO能隙减小。量子化学(DFT)结果支持了光谱电化学数据,即二芳基氨基取代的卟啉5在第一氧化态下卟啉环和氨基之间电荷的离域,该卟啉在所有研究的卟啉中表现出最佳的光伏性能。通过对基于相同TiO₂薄膜的电池性能进行比较,由卟啉5与鹅去氧胆酸(CDCA)以[5]/[CDCA]=1:1和1:2的比例共吸附在TiO₂上制成的器件,其功率转换效率与基于N3的DSSC相似,这使得这种绿色染料成为彩色DSSC应用的有前途的候选者。

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