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用于染料敏化太阳能电池的具有缺电子二苯基喹喔啉部分的π共轭骨架的高性能偶极有机染料。

High-performance dipolar organic dyes with an electron-deficient diphenylquinoxaline moiety in the π-conjugation framework for dye-sensitized solar cells.

机构信息

Institute of Chemistry, Academia Sinica, Taiwan, ROC.

出版信息

Chemistry. 2012 Sep 17;18(38):12085-95. doi: 10.1002/chem.201201000. Epub 2012 Aug 13.

Abstract

We report here the synthesis and electrochemical and photophysical properties of a series of easily prepared dipolar organic dyes and their application in dye-sensitized solar cells (DSSCs). For the six organic dyes, the molecular structures comprised a triphenylamine group as an electron donor, a cyanoacrylic acid as an electron acceptor, and an electron-deficient diphenylquinoxaline moiety integrated in the π-conjugated spacer between the electron donor and acceptor moieties. The incorporation of the electron-deficient diphenylquinoxaline moiety effectively reduces the energy gap of the dyes and broadly extends the spectral coverage. DSSCs based on dye 6 produced the best overall cell performance of 7.35 %, which translates to approximately 79 % of the intrinsic efficiency of the DSSCs based on the standard N719 dye under identical experimental conditions. The high performance of DSSCs based on dye 6 among the six dyes explored is attributed to the combined effects of high dye loading on a TiO(2) surface, rapid dye regeneration, and effective retardation of charge recombination.

摘要

我们在此报告了一系列易于制备的偶极有机染料的合成、电化学和光物理性质,并将其应用于染料敏化太阳能电池 (DSSC)。对于这六种有机染料,其分子结构包含三苯胺基团作为电子给体、氰基丙烯酸作为电子受体,以及在电子给体和受体基团之间的π 共轭间隔物中集成的缺电子二苯基喹喔啉部分。缺电子二苯基喹喔啉部分的掺入有效地降低了染料的能隙并广泛扩展了光谱覆盖范围。基于染料 6 的 DSSC 产生了最佳的整体电池性能,为 7.35%,这相当于在相同实验条件下基于标准 N719 染料的 DSSC 的固有效率的约 79%。在探索的六种染料中,基于染料 6 的 DSSC 具有如此高的性能,归因于 TiO(2)表面上高染料负载、快速染料再生和有效抑制电荷复合的综合效果。

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