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锌卟啉敏化太阳能电池中间位和对位羧基苯基取代基数量和位置的影响:结构-性能关系。

Effects of number and position of meta and para carboxyphenyl groups of zinc porphyrins in dye-sensitized solar cells: structure-performance relationship.

机构信息

Institute of Chemistry, Academia Sinica , Nankang, Taipei, 115 Taiwan.

出版信息

ACS Appl Mater Interfaces. 2015 Jan 28;7(3):1879-91. doi: 10.1021/am507503d. Epub 2015 Jan 16.

Abstract

Porphyrin sensitizers containing meta- and para-carboxyphenyl groups in their meso positions have been synthesized and investigated for their performance in dye-sensitized solar cells (DSSCs). The superior performance of para-derivative compared to meta-derivative porphyrins was revealed by optical spectroscopy, electrochemical property measurements, density functional theory (DFT) calculations, attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy, incident photon-to-current conversion efficiency (IPCE), electrochemical impedance spectroscopy (EIS), and stability performance. Absorption spectra of para-carboxyphenyl-substituted porphyrins on TiO2 show a broader Soret band compared to meta-carboxyphenyl-substituted porphyrins. ATR-FTIR spectra of the studied porphyrins on TiO2 were applied to investigate the number and mode of carboxyl groups attached to TiO2. The VOC, JSC, and IPCE values of para-series porphyrins were distinctly superior to those of meta-series porphyrins. The Nyquist plots of the studied porphyrins show that charge injection in para-series porphyrins is superior to that in meta-series porphyrins. The orthogonally positioned para derivatives have more efficient charge injection and charge transfer over charge recombination, whereas the efficiencies of flat-oriented meta derivatives are retarded by rapid charge recombination. Photovoltaic measurements of the studied meta- and para-carboxyphenyl-functionalized porphyrins show that the number and position of carboxyphenyl groups play a crucial role in the performance of the DSSC. Our results indicate that para-carboxyphenyl derivatives outperform meta-carboxyphenyl derivatives to give better device performance. This study will serve as a guideline for the design and development of organic, porphyrin, and ruthenium dyes in DSSCs.

摘要

具有间位和对位羧苯基基团的卟啉敏化剂已被合成,并研究了它们在染料敏化太阳能电池(DSSC)中的性能。通过光学光谱、电化学性质测量、密度泛函理论(DFT)计算、衰减全反射-傅里叶变换红外(ATR-FTIR)光谱、入射光子-电流转换效率(IPCE)、电化学阻抗谱(EIS)和稳定性性能揭示了对位衍生物比间位衍生物卟啉的优越性能。与间位取代卟啉相比,对位取代卟啉在 TiO2 上的吸收光谱显示出更宽的 Soret 带。研究卟啉在 TiO2 上的 ATR-FTIR 光谱用于研究附着在 TiO2 上的羧基的数量和模式。对位系列卟啉的 VOC、JSC 和 IPCE 值明显优于间位系列卟啉。研究卟啉的奈奎斯特图表明,对位系列卟啉的电荷注入优于间位系列卟啉。对位取代基具有更有效的电荷注入和电荷转移,而正交取代基的效率则受到快速电荷复合的阻碍。研究的间位和对位取代羧基卟啉的光伏测量表明,羧基卟啉的数量和位置对 DSSC 的性能起着至关重要的作用。我们的结果表明,对位取代基优于间位取代基,从而获得更好的器件性能。这项研究将为 DSSC 中有机、卟啉和钌染料的设计和开发提供指导。

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