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首页> 外文期刊>New Journal of Chemistry >Linearly π-extended squaraine dyes enable the spectral response of dye-sensitized solar cells in the NIR region over 800 nm
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Linearly π-extended squaraine dyes enable the spectral response of dye-sensitized solar cells in the NIR region over 800 nm

机译:线性π扩展的方酸染料可实现近800 nm的近红外区域中染料敏化太阳能电池的光谱响应

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摘要

Squarylium dyes with linearly π-extended structures involving three cyclobutene cores and four heterocyclic components were designed as metal-free sensitizing dyes that can enhance spectral responses in the range over 800 nm and successfully synthesized through the combination of Pd-catalyzed cross-coupling using stannylcydobutenediones and condensation reactions. The dyes exhibited intense absorption in the NIR region with maxima at around 850 nm and onsets at around 950 nm. Although the HOMO levels remained at the same levels as the corresponding standard squaraine dye, the LUMO levels of the dyes were at lower energies owing to the lowering of the bandgaps of the dyes. Dye-sensitized solar cells (DSSCs) based on these dyes exhibiting significantly wide spectral response including the NIR region showed enhanced short-circuit current density. Co-sensitization of the NIR-absorbing dyes with a standard far-red absorbing squaraine dye produced a complementary effect in spectral response, resulting in the increase in short-circuit current density.
机译:具有线性π扩展结构,涉及三个环丁烯核和四个杂环成分的鳞状dye染料被设计为无金属的增感染料,可以在800 nm以上的范围内增强光谱响应,并通过使用甲锡基丁二烯酮经Pd催化的交叉偶联成功合成和缩合反应。染料在NIR区域表现出强烈的吸收,最大吸收在850 nm附近,开始在950 nm附近。尽管HOMO能级保持与相应的标准方酸菁染料相同的水平,但是由于染料的带隙降低,所以染料的LUMO能级处于较低的能量。基于这些染料的染料敏化太阳能电池(DSSC)表现出明显的宽光谱响应,包括NIR区域,显示出增强的短路电流密度。 NIR吸收染料与标准的远红外吸收方酸染料的共敏化在光谱响应中产生了互补作用,从而导致短路电流密度增加。

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