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花色苷的合成类似物作为染料敏化太阳能电池的敏化剂。

Synthetic analogues of anthocyanins as sensitizers for dye-sensitized solar cells.

机构信息

CNR-IPCF, Istituto per i Processi Chimico-Fisici, via F. Stagno D'Alcontres 37, I-98158 Messina, Italy.

出版信息

Photochem Photobiol Sci. 2013 May;12(5):883-94. doi: 10.1039/c3pp25347c.

Abstract

Seven flavylium salt dyes were employed for the first time as sensitizers for dye-sensitized solar cells (DSSCs). The theoretical and experimental wavelengths of the maximum absorbances, the HOMO and LUMO energy levels, the coefficients, the oscillator strengths and the dipole moments are calculated for these synthetic dyes. The introduction of a donor group in the flavylium molecular structure was investigated. Photophysical and photoelectrochemical measurements showed that some of these synthetic analogues of anthocyanins are very promising for DSSC applications. The best performance was obtained by a DSSC based on the novel compound 7-(N,N-diethylamino)-3',4'-dihydroxyflavylium which produced a 2.15% solar energy-to-electricity conversion efficiency, under AM 1.5 irradiation (100 mW cm(-2)) with a short-circuit current density (J(sc)) of 12.0 mA cm(-2), a fill factor of 0.5 and an open-circuit voltage (V(oc)) of 0.355 V; its incident photocurrent efficiency of 51% at the peak of the visible absorption band of the dye is remarkable. Our results demonstrated that the substitution of a hydroxylic group with a diethylamine unit in position 7 of ring A of the flavylium backbone expanded the π-conjugation in the dye and thus resulted in a higher absorption in the visible region and is advantageous for effective electron injection from the dye into the conduction band of TiO2.

摘要

七种 flavylium 盐染料首次被用作染料敏化太阳能电池 (DSSC) 的敏化剂。对这些合成染料的最大吸收波长、HOMO 和 LUMO 能级、系数、振子强度和偶极矩的理论和实验值进行了计算。研究了在 flavylium 分子结构中引入供体基团的情况。光物理和光电化学测量表明,这些花青素的一些合成类似物非常有希望用于 DSSC 应用。基于新型化合物 7-(N,N-二乙基氨基)-3',4'-二羟基 flavylium 的 DSSC 获得了最佳性能,在 AM 1.5 照射(100 mW cm(-2))下,短路电流密度 (J(sc)) 为 12.0 mA cm(-2),填充因子为 0.5,开路电压 (V(oc)) 为 0.355 V;其在染料可见光吸收带峰值处的入射光电流效率为 51%,非常显著。我们的结果表明,在 flavylium 主链 A 环的 7 位用二乙胺单元取代羟基基团扩展了染料的 π 共轭,从而导致在可见光区的更高吸收,有利于从染料有效注入电子到 TiO2 的导带。

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