Strain-enhanced electrical performance in stretchable semiconducting polymers

Author:

Zhou QingORCID,Wang Zhihui,Yan Yongkun,Yang Longfei,Chi Kai,Wu Yangjiang,Li Wenhao,Yi Zhiying,Liu Yunqi,Zhao YanORCID

Abstract

AbstractIntrinsically stretchable semiconducting polymers are promising candidates for developing wearable electronics, but remain underdeveloped because the correlation between the microstructural evolution during stretching and the resultant charge transport is not clearly understood. In this study, we clarify the impact of molecular orientation on the dynamic performance of stretched semiconducting polymers, controlling molecular orientations via solvent-dependent spin-coating. We found that strain-enhanced electrical performance is feasible by quelling disorders within the face-on-packed aggregates. Strain facilitates 3D ordering in face-on-packed films, but increase the π-π orientation disorders and lamellar dislocation in the edge-on analogue, which contribute inversely to the charge transport. Consequently, the face-on samples maintain strain-resistant energetic disorder and a 1.5× increase in on-current, achieving a 10-times-higher retention than the edge-on analogue upon 100% strain. Furthermore, we developed a reliable way for measuring the photoelectrical stretchability of semiconducting polymer. This study contributes to developing high-performance stretchable semiconducting polymers.

Funder

Ministry of Science and Technology of the People’s Republic of China

National Natural Science Foundation of China

Natural Science Foundation of Shanghai

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,General Materials Science

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