Design of intrinsically stretchable and highly conductive polymers for fully stretchable electrochromic devices

被引:0
|
作者
Youngno Kim
Chanil Park
Soeun Im
Jung Hyun Kim
机构
[1] Yonsei University,Department of Chemical and Biomolecular Engineering
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Stretchable materials are essential for next generation wearable and stretchable electronic devices. Intrinsically stretchable and highly conductive polymers (termed ISHCP) are designed with semi interpenetrating polymer networks (semi-IPN) that enable polymers to be simultaneously applied to transparent electrodes and electrochromic materials. Through a facile method of acid-catalyzed polymer condensation reaction, optimized ISHCP films show the highest electrical conductivity, 1406 S/cm, at a 20% stretched state. Without the blending of any other elastomeric matrix, ISHCP maintains its initial electrical properties under a cyclic stretch-release of over 50% strain. A fully stretchable electrochromic device based on ISHCP is fabricated and shows a performance of 47.7% ∆T and high coloration efficiency of 434.1 cm2/C at 590 nm. The device remains at 45.2% ∆T after 50% strain stretching. A simple patterned electrolyte layer on a stretchable electrochromic device is also realized. The fabricated device, consisting of all-plastic, can be applied by a solution process for large scale production. The ISHCP reveals its potential application in stretchable electrochromic devices and satisfies the requirements for next-generation stretchable electronics.
引用
收藏
相关论文
共 50 条
  • [31] Highly stretchable conductive materials and applications using these
    Yoshida M.
    Journal of Japan Institute of Electronics Packaging, 2019, 22 (06) : 470 - 475
  • [32] Highly conductive and stretchable filament for flexible electronics
    Sun, Hongye
    Zettl, Julian
    Willenbacher, Norbert
    ADDITIVE MANUFACTURING, 2023, 78
  • [33] Aggregation structure and glass transition of intrinsically stretchable semiconducting polymers
    Wang, Zhihui
    Wu, Yangjiang
    Zhou, Qing
    Yang, Longfei
    Yi, Zhiying
    Yan, Yongkun
    Liu, Yunqi
    Zhao, Yan
    MATTER, 2023, 6 (10) : 3434 - 3448
  • [34] Conductive Polymers for Flexible and Stretchable Organic Optoelectronic Applications
    Wu, Xiaoling
    Fu, Weifei
    Chen, Hongzheng
    ACS APPLIED POLYMER MATERIALS, 2022, : 4609 - 4623
  • [35] Conductive Polymers for Flexible and Stretchable Organic Optoelectronic Applications
    Wu, Xiaoling
    Fu, Weifei
    Chen, Hongzheng
    ACS Applied Polymer Materials, 2022, 4 (07) : 4609 - 4623
  • [36] Novel Stretchable Ambipolar Electrochromic Devices Based on Highly Transparent AgNW/PDMS Hybrid Electrodes
    Chen, Wei-Hao
    Li, Fang-Wei
    Liou, Guey-Sheng
    ADVANCED OPTICAL MATERIALS, 2019, 7 (19):
  • [37] Highly stable Ag@Au nanowires micromesh as transparent conductive network for stretchable electrochromic modulator
    Zhang, Ping
    Sui, Qing
    Liu, Zhiqiang
    Hu, Chengyv
    Li, Chunjing
    Guo, Xiaodan
    Wang, Jinhui
    Cai, Guofa
    CHEMICAL ENGINEERING JOURNAL, 2024, 498
  • [38] Intrinsically stretchable organic optoelectronic devices and arrays: progress and perspective
    Bian, Yangshuang
    Liu, Yunqi
    Guo, Yunlong
    SCIENCE BULLETIN, 2023, 68 (10) : 975 - 980
  • [39] Wearable Intrinsically Soft, Stretchable, Flexible Devices for Memories and Computing
    Rajan, Krishna
    Garofalo, Erik
    Chiolerio, Alessandro
    SENSORS, 2018, 18 (02)
  • [40] Intrinsically Stretchable and Conductive Textile by a Scalable Process for Elastic Wearable Electronics
    Wang, Chunya
    Zhang, Mingchao
    Xia, Kailun
    Gong, Xueqin
    Wang, Huimin
    Yin, Zhe
    Guan, Baolu
    Zhang, Yingying
    ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (15) : 13331 - 13338