首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Perylene diimide based non-fullerene acceptors: top performers and an emerging class featuring N-annulation
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Perylene diimide based non-fullerene acceptors: top performers and an emerging class featuring N-annulation

机译:基于Perylene二酰亚胺的非富勒烯受体:顶级表演者和新兴课程以n-andulation为特色

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摘要

The perylene diimide (PDI) chromophore is a classic polycyclic aromatic hydrocarbon that has been widely used in the field of organic electronics. A combination of strong visible light absorption and low-lying frontier molecular orbital (FMO) energy levels make PDI useful as a photoactive electron transporting material in organic solar cells. Indeed, PDI based molecules and polymers have been studied as so-called non-fullerene acceptors (NFAs) for over 30 years. Recent advances in materials design has enabled solution processed organic solar cell devices based on PDI materials to reach power conversion efficiencies (PCEs) upwards of 12%. This perspective highlights recent PDI design strategies developed to enable such highly performing devices and covers recent work on N-annulated PDIs, which have the potential to deliver roll-to-roll compatible processed solar cells with high operating voltages.
机译:苝二亚胺(PDI)发色团是一种典型的多环芳烃,在有机电子学领域有着广泛的应用。强可见光吸收和低洼前沿分子轨道(FMO)能级的结合使PDI成为有机太阳能电池中的光活性电子传输材料。事实上,基于PDI的分子和聚合物作为所谓的非富勒烯受体(NFA)已经研究了30多年。材料设计方面的最新进展使基于PDI材料的溶液处理有机太阳能电池器件的功率转换效率(PCE)达到12%以上。这一观点强调了为实现此类高性能设备而开发的最新PDI设计策略,并涵盖了N-环PDI的最新工作,该PDI有可能提供具有高工作电压的卷对卷兼容加工太阳能电池。

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