Multi-scale ordering in highly stretchable polymer semiconducting films

  • Xu, Jie; 
  • Wu, Hung-Chin; 
  • Zhu, Chenxin; 
  • Ehrlich, Anatol; 
  • Shaw, Leo; 
  • ... Kim, Yun-Hi; 
  • 외 18명
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초록

Stretchable semiconducting polymers have been developed as a key component to enable skin-like wearable electronics, but their electrical performance must be improved to enable more advanced functionalities. Here, we report a solution processing approach that can achieve multi-scale ordering and alignment of conjugated polymers in stretchable semiconductors to substantially improve their charge carrier mobility. Using solution shearing with a patterned microtrench coating blade, macroscale alignment of conjugated-polymer nanostructures was achieved along the charge transport direction. In conjunction, the nanoscale spatial confinement aligns chain conformation and promotes short-range p-p ordering, substantially reducing the energetic barrier for charge carrier transport. As a result, the mobilities of stretchable conjugated-polymer films have been enhanced up to threefold and maintained under a strain up to 100%. This method may also serve as the basis for large-area manufacturing of stretchable semiconducting films, as demonstrated by the roll-to-roll coating of metre-scale films.

키워드

UNIAXIAL ALIGNMENT; CHARGE-TRANSPORT; MOBILITY; ELECTRONICS
제목
Multi-scale ordering in highly stretchable polymer semiconducting films
저자
Xu, Jie; Wu, Hung-Chin; Zhu, Chenxin; Ehrlich, Anatol; Shaw, Leo; Nikolka, Mark; Wang, Sihong; Molina-Lopez, Francisco; Gu, Xiaodan; Luo, Shaochuan; Zhou, Dongshan; Kim, Yun-Hi; Wang, Ging-Ji Nathan; Gu, Kevin; Feig, Vivian Rachel; Chen, Shucheng; Kim, Yeongin; Katsumata, Toru; Zheng, Yu-Qing; Yan, He; Chung, Jong Won; Lopez, Jeffrey; Murmann, Boris; Bao, Zhenan
DOI
10.1038/s41563-019-0340-5
발행일
2019-06
유형
Article
저널명
Nature Materials
권
18
호
6
페이지
594 ~ +