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基于茚并喹啉的非对称方酸染料用于近红外吸收:染料敏化太阳能电池中空间和电子效应的研究。

Indenoquinaldine-Based Unsymmetrical Squaraine Dyes for Near-Infrared Absorption: Investigating the Steric and Electronic Effects in Dye-Sensitized Solar Cells.

机构信息

Physical and Materials Chemistry Division, CSIR-National Chemical Laboratory, Dr. Homi Bhaba Road, Pune, 411008, India.

Academy of Scientific and Innovative Research (AcSIR), New Delhi, 110025, India.

出版信息

Chemistry. 2018 Nov 2;24(61):16368-16378. doi: 10.1002/chem.201803062. Epub 2018 Oct 12.

Abstract

A series of near-infrared (NIR)-responsive unsymmetrical squaraine dyes (ISQ1-3) incorporating a fused indenoquinaldine-based donor have been designed and synthesized. C alkyl chains were incorporated at the sp -hybridized carbon center of the indene unit of the indenoquinaldine in an out-of-plane orientation to control dye aggregation on the surface of titanium dioxide, and indole (ISQ1), benzo[e]indole (ISQ2), and quinoline (ISQ3) moieties were included as the donor component bearing the anchoring carboxy group to extend the absorption in the NIR region and to systematically study the effect of the electronic modification on the performance of dye-sensitized solar cells (DSSC). All the dyes exhibit intense absorption (ϵ≥10  m  cm ) in the NIR region, and the dye-adsorbed TiO films exhibit broad panchromatic absorption. The incident photon-to-current efficiency (IPCE) spectrum of the ISQ3-based DSSC device displays a panchromatic IPCE response up to 880 nm. Additionally, the ISQ3-sensitized device provides the best efficiency of 4.15 % with a short circuit current density (J ) of 10.02 mA cm , open-circuit voltage (V ) of 0.58 V, and fill factor (ff) of 72 % in the presence of 10 equivalents of 3α,7α-dihydroxy-5β-cholanic acid (CDCA). Electrochemical impedance spectroscopy analysis showed attenuated charge recombination in the ISQ3-sensitized DSSC, which contributes to its higher value of V compared with the other dyes.

摘要

一系列近红外(NIR)响应的不对称方酸染料(ISQ1-3)被设计并合成,它们都包含一个融合的基于茚并喹啉的给体。C 烷基链以平面外的方式被整合到茚并喹啉的茚单元的 sp 杂化碳原子中心,以控制染料在二氧化钛表面的聚集,吲哚(ISQ1)、苯并[e]吲哚(ISQ2)和喹啉(ISQ3)部分作为含有锚定羧基的给体部分被包含在内,以扩展在近红外区域的吸收,并系统地研究电子修饰对染料敏化太阳能电池(DSSC)性能的影响。所有染料在近红外区域都表现出强烈的吸收(ε≥10 m cm),并且染料吸附的 TiO 薄膜表现出宽的全色吸收。基于 ISQ3 的 DSSC 器件的入射光子电流效率(IPCE)光谱显示出高达 880nm 的全色 IPCE 响应。此外,在存在 10 当量的 3α,7α-二羟基-5β-胆酸(CDCA)的情况下,ISQ3 敏化器件提供了最佳的 4.15%的效率,短路电流密度(J)为 10.02 mA cm,开路电压(V)为 0.58 V,填充因子(ff)为 72%。电化学阻抗谱分析表明,ISQ3 敏化的 DSSC 中电荷复合得到了抑制,这有助于提高 V 的值,与其他染料相比。

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