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Modular TiO2-Squaraine Dyes/Electrolyte Interface for Dye-Sensitized Solar Cells with Cobalt Electrolyte

机译:模块化TiO2-Squaraine染料/电解质界面,用于含钴电解质的染料敏化太阳能电池

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摘要

Strategies to diminish both charge recombination and aggregation of dyes on the photoanode by functionalizing the sensitizer with alkyl groups is the best approach to achieve high dye-sensitized solar cell (DSSC) efficiency. Development of such a photoanode with NIR-active dyes which is compatible with a cobalt electrolyte is important to enhance the photovoltaic performance. In this report, alkyl-group-wrapped donor-acceptor-donor (D-A-D) based unsymmetrical squaraine dyes have been used for DSSC device characterization with a cobalt electrolyte. Surface passivation of photoanode was varied systematically by the extent of functionalization with alkyl groups to avoid charge recombination. DSSC device performance of 5.92% was achieved for an alkyl-group-wrapped squaraine dye with a cobalt electrolyte. Hence, appending the alkyl groups on the donor unit of squaraine dyes helps passivating the photoanode, whereas introducing hydrophilic groups provides a leaky surface where oxidized electrolyte species reach the titanium-metal-oxide surface which promotes the charge recombination process.
机译:策略来减少电荷复合和聚合光电阳极上的染料构建的敏化剂烷基组是最好的方法来实现高吗涂料太阳能电池(DSSC)效率。发展这样一个与NIR-active光电阳极兼容钴染料电解质提高是很重要的光电性能。alkyl-group-wrapped donor-acceptor-donor (D-A-D)基于不对称squaraine染料使用用钴DSSC设备描述电解液。不同程度的系统吗为了避免功能化与烷基组重组。alkyl-group-wrapped达到5.92%squaraine染料与钴电解液。附加上的烷基组捐赠单位squaraine染料有助于光电阳极的钝化,而引入亲水性基团提供了漏水的表面氧化电解质种类到达titanium-metal-oxide表面促进电荷复合的过程。

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