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Design of High-Performance Chlorine Type Dyes for Dye-Sensitized Solar Cells

机译:染料敏化太阳能电池高性能氯型染料的设计

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摘要

Intrinsic defect of electronic structure for the chlorine-type porphyrin 1, which was synthesized for use in dye-sensitized solar cell (DSSC), is found by theoretical calculation including density functional method (DFT), time-dependent DFT, and C+/C- function. It is believed that the limited cell performance obtained by using dye 1 as the sensitizer is due to the existence of this electronic defect. To avoid this defect, a series of novel molecules with electron deficient π bridge were designed. The subsequent theoretical calculation indicated that the electron deficient π bridge in the newly designed molecule is quite effective in offsetting the electronic defect observed for dye 1. The parameters for the designed molecules closely associated with open-circuit voltage and short-circuit current density including dipole moment of dye vertical to the surface of semiconductor and light-harvesting efficiency were then evaluated. By comparing these parameters of designed dyes with those of dye 1, we can predict that the DSSC based on dye 4 (2, 6-cyan benzoic acid as anchoring group) should possess enhanced performance, which would be a valuable theoretical guidance for the practical work.
机译:通过理论计算发现了氯型卟啉1的电子结构的固有缺陷,该氯型卟啉1被合成用于染料敏化太阳能电池(DSSC),其理论计算包括密度泛函方法(DFT),随时间变化的DFT和C + / C -功能。据信,通过使用染料1作为敏化剂而获得的有限的电池性能是由于该电子缺陷的存在。为了避免这种缺陷,设计了一系列具有缺电子π桥的新型分子。随后的理论计算表明,新设计分子中的缺电子π桥在抵消染料1中观察到的电子缺陷方面非常有效。设计分子的参数与开路电压和短路电流密度(包括偶极子)紧密相关然后评估染料垂直于半导体表面的力矩和光收集效率。通过比较设计的染料和染料1的这些参数,我们可以预测基于染料4(2,6-氰基苯甲酸作为锚定基团)的DSSC应该具有增强的性能,这对于实际应用将是有价值的理论指导。工作。

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