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首页> 外文期刊>Angewandte Chemie >Minimization of Carrier Losses for Efficient Perovskite Solar Cells through Structural Modification of Triphenylamine Derivatives
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Minimization of Carrier Losses for Efficient Perovskite Solar Cells through Structural Modification of Triphenylamine Derivatives

机译:通过三苯胺衍生物的结构改性,最小化高效钙钛矿太阳能电池的载体损失

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摘要

Three hole transport materials (HTMs) based on a substituted triphenylamine moiety have been synthesized and successfully employed in triple-cation mixed-halide PSCs, reaching efficiencies of 19.4 %. The efficiencies, comparable to those obtained using spiro-OMeTAD, point them out as promising candidates for easily attainable and cost-effective alternatives for PSCs, given their facile synthesis from commercially available materials. Interestingly, although all these HTMs show similar chemical and physical properties, they provide different carrier recombination kinetics. Our results demonstrate that is feasible through the molecular design of the HTM to minimize carrier losses and, thus, increase the solar cell efficiencies.
机译:基于取代的三苯胺部分的三孔运输材料(HTMS)已经合成并成功地用于三阳离子混合卤化卤素PSC,效率为19.4%。 效率,与使用Spiro-Ometad获得的效率指出,鉴于从市售材料的容易合成的易于达到和经济高效的PSC替代品,将它们视为有希望的候选者。 有趣的是,尽管所有这些HTM都显示了类似的化学和物理性质,但它们提供了不同的载体重组动力学。 我们的结果证明,通过HTM的分子设计可行,以最大限度地减少载体损失,因此增加太阳能电池效率。

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