材料科学
有机电子学
聚合物
有机太阳能电池
聚合物混合物
化学工程
光伏系统
纳米技术
复合材料
晶体管
共聚物
生态学
物理
量子力学
工程类
生物
电压
作者
Mengyuan Gao,Chunlong Sun,Yiwen Li,Na Li,Hanqiu Jiang,Chunyong He,Yu Chen,Wenchao Zhao,Jianhui Hou,Long Ye
标识
DOI:10.1002/adma.202406653
摘要
The solution aggregation structure of conjugated polymers is crucial to the morphology and resultant optoelectronic properties of organic electronics and is of considerable interest in the field. Precise characterizations of the solution aggregation structures of organic photovoltaic (OPV) blends and their temperature-dependent variations remain challenging. In this work, the temperature-dependent solution aggregation structures of three representative high-efficiency OPV blends using small-angle X-ray/neutron scattering are systematically probed. Three cases of solution processing resiliency are elucidated in state-of-the-art OPV blends. The exceptional processing resiliency of high-efficiency PBQx-TF blends can be attributed to the minimal changes in the multiscale solution aggregation structure at elevated temperatures. Importantly, a new parameter, the percentage of acceptors distributed within polymer aggregates (Ф), for the first time in OPV blend solution, establishes a direct correlation between Ф and performance is quantified. The device performance is well correlated with the Kuhn length of the cylinder related to polymer aggregates L
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