Highly Conductive Poly(Imide–Imine) Hybrid Vitrimer‐Graphene Aerogel Composites

Author:

Ma Yunlong1,Li Ruiyang1,Luo Shichang1,Shen Xiran1,Tao Rao1,Jin Yinghua2,Zhang Wei2,Qiu Li1

Affiliation:

1. Yunnan Key Laboratory for Micro/Nano Materials & Technology, National Center for International Research on Photoelectric and Energy Materials, School of Materials and Energy Yunnan University Kunming Yunnan 650091 China

2. Department of Chemistry University of Colorado Boulder Boulder Colorado 80309 USA

Abstract

Comprehensive SummaryAlthough polyimides (PIs) have shown great potential for a broad range of applications, it remains very challenging to achieve the malleability, rehealability and recyclability for PIs and their composites targeting various applications, particularly for the rapidly emerging flexible and stretchable electronics. Herein, malleable conductive poly(imide‐imine) hybrid (PIIH) vitrimer‐graphene aerogel (GA) composites have been prepared, for the first time, via simple sol‐gel film formation followed by heat‐press. The resulting PIIH‐GA composites exhibit not only the highly desired properties of thermosetting (strong mechanical strength) and thermoplastic (reprocessability) polymers, but also good conductivity enabled by the GA filler. PIIH3‐GA‐10 (with 10 wt% GA) showed one of the highest electrical conductivities (26.7 S/m) for PI‐based composites, as well as good electromagnetic interference (EMI) shielding performance. Moreover, the PIIH‐GA films could maintain good performance during stretching and even after chemical recycling, which opens new opportunities for flexible and sustainable electronics development.

Publisher

Wiley

Subject

General Chemistry

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