Authors
Diego Rosas Villalva, Saumya Singh, Luke A Galuska, Anirudh Sharma, Jianhua Han, Jian Liu, Md Azimul Haque, Soyeong Jang, Abdul Hamid Emwas, L Jan Anton Koster, Xiaodan Gu, Bob C Schroeder, Derya Baran
Publication date
2022
Journal
Materials Horizons
Volume
9
Issue
1
Pages
500-508
Publisher
Royal Society of Chemistry
Description
Molecular doping is the key to enabling organic electronic devices, however, the design strategies to maximize doping efficiency demands further clarity and comprehension. Previous reports focus on the effect of the side chains, but the role of the backbone is still not well understood. In this study, we synthesize a series of NDI-based copolymers with bithiophene, vinylene, and acetylenic moieties (P1G, P2G, and P3G, respectively), all containing branched triethylene glycol side chains. Using computational and experimental methods, we explore the impact of the conjugated backbone using three key parameters for doping in organic semiconductors: energy levels, microstructure, and miscibility. Our experimental results show that P1G undergoes the most efficient n-type doping owed primarily to its higher dipole moment, and better host–dopant miscibility with N-DMBI. In contrast, P2G and P3G possess more planar …
Total citations
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