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Quadrupolar (donor)2acceptor-acid chromophores for dye-sensitized solar cells: influence of the core acceptor

机译:染料敏化太阳能电池的四极(供体)2受体-酸性生色团:核心受体的影响

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摘要

A series of four quadrupolar (Donor)2Acceptor-acid (D2A) sensitizers, based on two acceptor cores (dibenzophenazine (DBP) or dithienophenazine (DTP)), were synthesized and their optoelectronic and photovoltaic properties were investigated. 4-Hexyl-thien-2-yl groups were employed as donor units, to produce regioisomers depending on their connecting position to the core. This architectural design leads to the investigation of the structure-property relationships of the dyes, both in solution and upon integration in dye-sensitized solar cells (DSSCs). Within sets of regioisomers, frontier orbital levels and absorption properties differed, but the photovoltaic performances of the DSSCs were similar. When examining the effect of the core, the electronic properties (absorbance, LUMO level) predicted a more favourable electron injection for the DTP systems. However, the open circuit voltages are ~100 mV greater for the DBP systems.
机译:基于两个受体核(二苯并吩嗪(DBP)或二噻吩并吩嗪(DTP)),合成了一系列的四种四极(Donor)2受体酸(D2A)敏化剂,并研究了它们的光电性能。使用4-己基-噻吩-2-基作为供体单元,以根据其与核的连接位置产生区域异构体。这种体系结构设计导致人们研究了染料在溶液中以及在染料敏化太阳能电池(DSSC)中的整合后的结构-特性关系。在区域异构体组中,前沿轨道水平和吸收特性不同,但是DSSC的光伏性能相似。当检查纤芯的作用时,电子性能(吸光度,LUMO水平)预示了DTP系统的电子注入更为有利。但是,对于DBP系统,开路电压要高约100 mV。

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