共轭体系
材料科学
聚合物
链条(单位)
纳米技术
计算机科学
计算生物学
生物物理学
生物
物理
天文
复合材料
作者
Yangyang Zhou,Yu‐Chun Xu,Ze‐Fan Yao,Jia‐Ye Li,Chen‐Kai Pan,Yang Lu,Chi‐Yuan Yang,Li Ding,Bufan Xiao,Xinyi Wang,Yu Shao,Wenbin Zhang,Jie‐Yu Wang,Huan Wang,Jian Pei
标识
DOI:10.1038/s41467-023-39133-w
摘要
It remains challenging to understand the structural evolution of conjugated polymers from single chains to solvated aggregates and film microstructures, although it underpins the performance of optoelectrical devices fabricated via the mainstream solution processing method. With several ensemble visual measurements, here we unravel the morphological evolution process of a model system of isoindigo-based conjugated molecules, including the hidden molecular assembly pathways, the mesoscale network formation, and their unorthodox chain dependence. Short chains show rigid chain conformations forming discrete aggregates in solution, which further grow to form a highly ordered film that exhibits poor electrical performance. In contrast, long chains exhibit flexible chain conformations, creating interlinked aggregates networks in solution, which are directly imprinted into films, forming interconnective solid-state microstructure with excellent electrical performance. Visualizing multi-level assembly structures of conjugated molecules provides a deep understanding of the inheritance of assemblies from solution to solid-state, accelerating the optimization of device fabrication.
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