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Quaternary Organic Solar Cells Enhanced by Cocrystalline Squaraines with Power Conversion Efficiencies >10%

机译:通过电力转换效率的COCRYSTALLINE SQUARAINES增强季季有机太阳能电池> 10%

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摘要

The incorporation of multiple donors into the bulk-heterojunction layer of organic polymer solar cells (PSCs) has been demonstrated as a practical and elegant strategy to improve photovoltaics performance. However, it is challenging to successfully design and blend multiple donors, while minimizing unfavorable interactions (e.g., morphological traps, recombination centers, etc.). Here, a new Forster resonance energy transfer-based design is shown utilizing the synergistic nature of three light active donors (two small molecules and a high-performance donor-acceptor polymer) with a fullerene acceptor to create highly efficient quaternary PSCs with power conversion efficiencies (PCEs) of up to 10.7%. Within this quaternary architecture, it is revealed that the addition of small molecules in low concentrations broadens the absorption bandwidth, induces cocrystalline molecular conformations, and promotes rapid (picosecond) energy transfer processes. These results provide guidance for the design of multiple-donor systems using simple processing techniques to realize single-junction PSC designs with unprecedented PCEs.
机译:已经证明了多种供体与有机聚合物太阳能电池(PSCs)的体外异质结层的掺入作为改善光伏性能的实用和优雅的策略。然而,成功设计和混合多个供体是挑战,同时最大限度地减少不利的相互作用(例如,形态陷阱,重组中心等)。这里,利用三个光活性供体(两个小分子和高性能供体聚合物)的协同性质,利用具有富勒烯受体的协同性质,以产生高效的季度PSC,以功率转换效率产生新的福尔斯特共振能量转移的设计。 (PCE)高达10.7%。在该季度架构中,揭示了低浓度的小分子加宽吸收带宽,诱导聚晶的分子构象,并促进快速(PICOSecond)能量转移过程。这些结果提供了使用简单加工技术来实现具有前所未有的PSC设计的单结PSC设计的多送物系统的指导。

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