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Recent Progress in Molecular Design of Fused Ring Electron Acceptors for Organic Solar Cells

机译:有机太阳能电池融合环电子受体分子设计的最新进展

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The quest for sustainable energy sources has led to accelerated growth in research of organic solar cells (OSCs). A solution-processed bulkheterojunction (BHJ) OSC generally contains a donor and expensive fullerene acceptors (FAs). The last 20 years have been devoted by the OSC community to developing donor materials, specifically low bandgap polymers, to complement FAs in BHJs. The current improvement from ≈2.5% in 2013 to 17.3% in 2018 in OSC performance is primarily credited to novel nonfullerene acceptors (NFA), especially fused ring electron acceptors (FREAs). FREAs offer unique advantages over FAs, like broad absorption of solar radiation, and they can be extensively chemically manipulated to tune optoelectronic and morphological properties. Herein, the current status in FREA-based OSCs is summarized, such as design strategies for both wide and narrow bandgap FREAs for BHJ, all-small-molecule OSCs, semi-transparent OSC, ternary, and tandem solar cells. The photovoltaics parameters for FREAs are summarized and discussed. The focus is on the various FREA structures and their role in optical and morphological tuning. Besides, the advantages and drawbacks of both FAs and NFAs are discussed. Finally, an outlook in the field of FREAOSCs for future material design and challenges ahead is provided.
机译:寻求可持续能源的追求导致有机太阳能电池(OSC)研究的加速增长。解决方案加工的散装体形官能(BHJ)OSC通常包含供体和昂贵的富勒烯受体(FAS)。 OSC县的过去20年来致力于开发供体材料,特别是低带隙聚合物,以在BHJ中补充FAS。目前在2013年的ISC表现中的≈2.5%的提高至2018年的17.3%主要归还新的非氟伦烯受体(NFA),特别是融合环电子受体(FREAS)。泡沫提供了优于FAS的独特优势,如太阳辐射的广泛吸收,它们可以广泛化学操纵以调整光电和形态特性。这里,总结了基于FREA的OSC中的当前状态,例如用于BHJ,全部小分子OSC,半透明OSC,三元和串联太阳能电池的宽和窄带隙污水的设计策略。摘要和讨论了FREAS的光伏参数。重点是各种FREA结构及其在光学和形态调谐中的作用。此外,讨论了Fas和NFA的优点和缺点。最后,提供了Freasosc领域的展望,用于未来的材料设计和前方挑战。

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