Efficient Solar Cells Based on a Polymer Donor with β-Branching in Trialkylsilyl Side Chains

Haijun Bin, M. Wienk, R. Janssen
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Abstract

Abstract Side-chain engineering is an important strategy in designing novel polymer semiconductor materials for high-efficient organic solar cells. The use of trialkylsilyl side chains can improve the photovoltaic efficiency by decreasing the energy of the HOMO of the polymer and improving its crystallinity and hole mobility. Compared to simple linear derivatives, α-branching in the alkyl groups of trialkylsilyl side chains causes strong aggregation and excessive phase separation in the photoactive layer, leading to poor device performance. β-Branching of the alkyl groups has not yet been used in trialkylsilyl side chains. Herein, we describe a new polymer (J77) with triisobutylsilyl side chains to investigate the effect of β-branching on the molecular aggregation, optical properties, energy levels, and photovoltaic properties. We find that compared to α-branching, β-branching of alkyl groups in trialkylsilyl side chains significantly reduces aggregation. This enables J77 to form blend morphologies in films that provide high-efficient solar cells in combination with different non-fullerene acceptors. Moreover β-branching of the alkyl groups in trialkylsilyl side chains lowers the HOMO energy level of J77 and increases the open-circuit voltage of J77-based solar cells without sacrificing short-circuit current density or fill factor.
基于三烷基甲硅烷基侧链具有β-支化的聚合物供体的高效太阳能电池
摘要侧链工程是设计用于高效有机太阳能电池的新型聚合物半导体材料的重要策略。使用三烷基甲硅烷基侧链可以通过降低聚合物的HOMO的能量并提高其结晶度和空穴迁移率来提高光伏效率。与简单的线性衍生物相比,三烷基甲硅烷基侧链的烷基中的α-支化导致光活性层中的强聚集和过度相分离,导致器件性能差。β-烷基的支链尚未用于三烷基甲硅烷基侧链。在此,我们描述了一种具有三异丁基甲硅烷基侧链的新型聚合物(J77),以研究β-支化对分子聚集、光学性质、能级和光伏性质的影响。我们发现,与α-支化相比,三烷基甲硅烷基侧链中烷基的β-支化显著减少了聚集。这使得J77能够在膜中形成共混形态,从而提供与不同的非富勒烯受体结合的高效太阳能电池。此外,三烷基甲硅烷基侧链中烷基的β-支化降低了J77的HOMO能级,并在不牺牲短路电流密度或填充因子的情况下增加了J77基太阳能电池的开路电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.70
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