Xu Man, Wei Chuanxin, Zhang Yunlong, Chen Jiefeng, Li Hao, Zhang Jingrui, Sun Lili, Liu Bin, Lin Jinyi, Yu Mengna, Xie Linghai, Huang Wei
State Key Laboratory of Organic Electronics and Information Displays & School of Chemistry and Life Sciences & Institute of Advanced Materials (IAM), Nanjing University of Posts & Telecommunications, Nanjing, 210023, China.
Key Laboratory of Flexible Electronics (KLOFE) & Institute of Advanced Materials (IAM), Nanjing Tech University (NanjingTech), 30 South Puzhu Road, Nanjing, 211816, China.
Adv Mater. 2024 Jan;36(1):e2301671. doi: 10.1002/adma.202301671. Epub 2023 Nov 20.
Hierarchical structure of conjugated polymers is critical to dominating their optoelectronic properties and applications. Compared to nonplanar conformational segments, coplanar conformational segments of conjugated polymers (CPs) demonstrate favorable properties for applications as a semiconductor. Herein, recent developments in the coplanar conformational structure of CPs for optoelectronic devices are summarized. First, this review comprehensively summarizes the unique properties of planar conformational structures. Second, the characteristics of the coplanar conformation in terms of optoelectrical properties and other polymer physics characteristics are emphasized. Five primary characterization methods for investigating the complanate backbone structures are illustrated, providing a systematical toolbox for studying this specific conformation. Third, internal and external conditions for inducing the coplanar conformational structure are presented, offering guidelines for designing this conformation. Fourth, the optoelectronic applications of this segment, such as light-emitting diodes, solar cells, and field-effect transistors, are briefly summarized. Finally, a conclusion and outlook for the coplanar conformational segment regarding molecular design and applications are provided.
共轭聚合物的层级结构对于主导其光电性能及应用至关重要。与非平面构象链段相比,共轭聚合物(CPs)的共平面构象链段展现出作为半导体应用的有利特性。在此,总结了用于光电器件的CPs共平面构象结构的近期进展。首先,本综述全面总结了平面构象结构的独特性质。其次,强调了共平面构象在光电性质及其他聚合物物理特性方面的特点。阐述了用于研究共平面主链结构的五种主要表征方法,为研究这种特定构象提供了一个系统的工具箱。第三,介绍了诱导共平面构象结构的内部和外部条件,为设计这种构象提供了指导。第四,简要总结了该链段的光电应用,如发光二极管、太阳能电池和场效应晶体管。最后,给出了关于共平面构象链段在分子设计和应用方面的结论与展望。