Designing a Length‐Modulated Azide Photocrosslinker to Improve the Stretchability of Semiconducting Polymers

叠氮化物 材料科学 共轭体系 聚合物 无定形固体 结晶度 乙二醇 硝基苯 高分子化学 化学工程 光化学 有机化学 复合材料 化学 工程类 催化作用
作者
Seung Hyun Kim,Sein Chung,Minkyu Kim,Dongho Yoo,Eunsol Ok,Seunghyun Kim,Kyu Chan Song,Young Jae Song,Boseok Kang,Kilwon Cho
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:33 (23) 被引量:22
标识
DOI:10.1002/adfm.202212127
摘要

Abstract To impart high stretchability to semiconducting polymers, researchers have used a photocrosslinking approach based on the nitrene chemistry of an azide‐incorporated molecular additive. However, understanding of the molecular design of azide crosslinkers with respect to their effects on the electrical and mechanical properties of semiconducting polymer thin films is lacking. In this study, the effects of an azide photocrosslinker's molecular length and structure on the microstructural, electrical features, and stretchability of photocrosslinked conjugated polymer films is investigated. For a systematic comparison, a series of nitrene‐induced photocrosslinkers ( n ‐NIPSs) with different numbers of ethylene glycol repeating units ( n = 1, 4, 8, 13) that bridge two tetrafluoro‐aryl azide end groups is synthesized. Two semicrystalline conjugated polymers and two nearly amorphous conjugated polymers are co‐processed with n ‐NIPSs and crosslinked by brief exposure to UV light. It is found that, among the synthesized n ‐NIPSs, the shortest one (1‐NIPS) is the most efficient in improving the stretchability of crosslinked indacenodithiophene‐benzothiadiazole films and that the improvement is achieved only with nearly amorphous polymers, not with semicrystalline conjugated polymers. On the basis of systematic studies, it is suggested that crosslinking density in amorphous regions is important in improving thin film stretchability.

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