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Toward Fast Screening of Organic Solar Cell Blends

机译:朝着有机太阳能电池混合的快速筛选

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摘要

The ever increasing library of materials systems developed for organic solar‐cells, including highly promising non‐fullerene acceptors and new, high‐efficiency donor polymers, demands the development of methodologies that i) allow fast screening of a large number of donor:acceptor combinations prior to device fabrication and ii) permit rapid elucidation of how processing affects the final morphology/microstructure of the device active layers. Efficient, fast screening will ensure that important materials combinations are not missed; it will accelerate the technological development of this alternative solar‐cell platform toward larger‐area production; and it will permit understanding of the structural changes that may occur in the active layer over time. Using the relatively high‐efficiency poly[(5,6‐difluoro‐2,1,3‐benzothiadiazol‐4,7‐diyl)‐alt‐(3,3′′′‐di(2‐octyldodecyl)‐2,2′;5′,2′′;5′′,2′′′‐quaterthiophen‐5,5′′′‐diyl)] (PCE11):phenyl‐C61‐butyric acid‐methyl‐ester acceptor (PCBM) blend systems, it is demonstrated that by means of straight‐forward thermal analysis, vapor‐phase‐infiltration imaging, and transient‐absorption spectroscopy, various blend compositions and processing methodologies can be rapidly screened, information on promising combinations can be obtained, reliability issues with respect to reproducibility of thin‐film formation can be identified, and insights into how processing aids, such as nucleating agents, affect structure formation, can be gained.
机译:为有机太阳能电池开发的越来越多的材料系统,包括高度承诺的非富勒烯受体和新的高效供体聚合物,需要发育方法,即允许快速筛选大量捐助者:受体组合在设备制造之前,II)允许快速阐明如何影响器件有源层的最终形态/微观结构。高效,快速筛选将确保不遗漏重要的材料组合;它将加速这一替代太阳能电池平台的技术发展走向较大区域生产;它将允许了解随着时间的推移可能在有源层中发生的结构变化。使用相对高效的聚[(5,6-二氟-2,1,3-苯并噻唑-4,7-二基)-(3,3'' - 二(2-八豆牌)-2,2 '; 5',2'; 5'',2''' - Quatterthinen-5,5''''' - 二苯基):苯基-C61-丁酸 - 甲基 - 酯受体(PCBM)混合系统据证明,通过直接热分析,蒸汽相渗透成像和瞬时吸收光谱,可以快速筛查各种共混物组合物和加工方法,可以获得有关有前途的组合的信息,可靠性问题可以鉴定薄膜形成的再现性,并且可以获得如何获得如何处理助剂的处理助剂,例如成核剂,影响结构形成。

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