首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effects of Porphyrinic meso-Substituents on the Photovoltaic Performance of Dye-Sensitized Solar Cells: Number and Position of p-Carboxyphenyl and Thienyl Groups on Zinc Porphyrins
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Effects of Porphyrinic meso-Substituents on the Photovoltaic Performance of Dye-Sensitized Solar Cells: Number and Position of p-Carboxyphenyl and Thienyl Groups on Zinc Porphyrins

机译:卟啉介观取代基对染料敏化太阳能电池光伏性能的影响:锌卟啉上对羧基苯基和噻吩基的数量和位置

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In order to understand the effects of mesosubstituents of the zinc porphyrins on optical, electrochemical, and photovoltaic properties, a series of porphyrins with different combinations of thienyl (S) and p-carboxyphenyl (A) groups as the meso substituents have been systematically synthesized and studied. The properties of zinc complexes 3S1A, trans-2S2A, cis-2S2A, and 1S3A were fully investigated by absorption and emission spectra, attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectra, density functional theory (DFT) calculations, electrochemical, photophysical, and photovoltaic measurements. With the increasing number of meso-thienyl groups, slight red-shifts of Soret and Q. bands were observed in both absorption and emission spectra. All of the absorption spectra of zinc porphyrins on TiO2 film show broadening and splitting of Soret bands because of-excitonic coupling of porphyrins. ATR-FTIR spectra revealed likely modes to determine either a single arm (in 3S1A and trans-2S2A) or double arms (in 1S3A and cis-2S2A) attached on TiO2. Two factors of p-carboxyphenyl and thienyl groups affecting the devices performance-heavy atom effect and the amount of dye loading on TiO2-areconcluded. Overall, the power conversion efficiencies (η) of the devices exhibit the following order: 1S3A (3.0%) > cis-2S2A (2.5%) > trans-2S2A (1.8%) 3S1A (0.2%).
机译:为了了解锌卟啉的介孔取代基对光学,电化学和光电性质的影响,已系统合成了一系列噻吩基(S)和对羧基苯基(A)基团具有不同组合作为内消旋取代基的卟啉,并且研究。锌配合物3S1A,trans-2S2A,cis-2S2A和1S3A的性质通过吸收和发射光谱,衰减的全反射-傅里叶变换红外(ATR-FTIR)光谱,密度泛函理论(DFT)计算,电化学,光物理和光伏测量。随着介噻吩基数量的增加,在吸收光谱和发射光谱中均观察到Soret和Q.带的轻微红移。 TiO2薄膜上所有锌卟啉的吸收光谱都表明,由于卟啉的激子耦合,Soret带变宽和分裂。 ATR-FTIR光谱揭示了确定附着在TiO2上的单臂(在3S1A和trans-2S2A中)或双臂(在1S3A和cis-2S2A中)的可能模式。对羧基羧基苯基和噻吩基影响器件性能的两个因素包括重原子效应和TiO2上染料的负载量。总体而言,设备的功率转换效率(η)呈现以下顺序:1S3A(3.0%)> cis-2S2A(2.5%)> trans-2S2A(1.8%) 3S1A(0.2%)。

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