Super Stretchable, Self-Healing, Adhesive Ionic Conductive Hydrogels Based on Tailor-Made Ionic Liquid for High-Performance Strain Sensors

被引:310
作者
Yao, Xue [1 ]
Zhang, Sufeng [1 ]
Qian, Liwei [1 ]
Wei, Ning [1 ]
Nica, Valentin [1 ]
Coseri, Sergiu [2 ]
Han, Fei [3 ]
机构
[1] Shaanxi Univ Sci & Technol, Key Lab Paper Based Funct Mat China Natl Light In, Natl Demonstrat Ctr Expt Light Chem Engn Educ, Shaanxi Prov Key Lab Papermaking Technol & Specia, Xian 710021, Peoples R China
[2] Romanian Acad, Petru Poni Inst Macromol Chem, 41 A Gr Ghica Voda Alley, Iasi 700487, Romania
[3] Xi An Jiao Tong Univ, Sch Life Sci & Technol, Bioinspired Engn & Biomech Ctr BEBC, Minist Educ,Key Lab Biomed Informat Engn, Xian 710049, Peoples R China
关键词
cellulose nanofibrils; conductive hydrogels; ionic liquids; multifunctional sensors; self-adhesion; self-healing; POLY(IONIC LIQUID); TRANSPARENT; SKIN;
D O I
10.1002/adfm.202204565
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Ionic conductive hydrogels (ICHs) integrate the conductive performance and soft nature of tissue-like materials to imitate the features of human skin with mechanical and sensory traits; thus, they are considered promising substitutes for conventional rigid metallic conductors when fabricating human-motion sensors. However, the simultaneous incorporation of excellent stretchability, toughness, ionic conductivity, self-healing, and adhesion via a simple method remains a grand challenge. Herein, a novel ICH platform is proposed by designing a phenylboronic acid-ionic liquid (PBA-IL) with multiple roles that simultaneously realize the highly mechanical, electrical, and versatile properties. This elaborately designed semi-interpenetrating network ICH is fabricated via a facile one-step approach by introducing cellulose nanofibrils (CNFs) into the PBA-IL/acrylamide cross-linked network. Ingeniously, the dynamic boronic ester bonds and physical interactions (hydrogen bonds and electrostatic interactions) of the cross-linked network endow these hydrogels with remarkable stretchability (1810 +/- 38%), toughness (2.65 +/- 0.03 MJ m(-3)), self-healing property (92 +/- 2% efficiency), adhesiveness, and transparency. Moreover, the construction of this material shows that CNFs can synergistically enhance mechanical performance and conductivity. The wide working strain range (approximate to 1000%) and high sensitivity (GF = 8.36) make this ICH a promising candidate for constructing the next generation of gel-based strain sensor platforms.
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页数:14
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共 66 条
  • [1] High strength, recyclable, anti-swelling and shape-memory hydrogels based on crystal microphase crosslinking and their application as flexible sensor
    Cai, Shuwei
    Niu, Ben
    Ma, Xinyu
    Wan, Songhan
    He, Xianru
    [J]. CHEMICAL ENGINEERING JOURNAL, 2022, 430
  • [2] Recent Progress in Essential Functions of Soft Electronic Skin
    Chen, Jianwen
    Zhu, Yutian
    Chang, Xiaohua
    Pan, Duo
    Song, Gang
    Guo, Zhanhu
    Naik, Nithesh
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2021, 31 (42)
  • [3] Superstretching MXene Composite Hydrogel as a Bidirectional Stress Response Thixotropic Sensor
    Chen, Siqi
    Dong, Yongjie
    Ma, Song
    Ren, Jiayuan
    Yang, Xipeng
    Wang, Yingjie
    Lu, Shaoyu
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (11) : 13629 - 13636
  • [4] Chen X. C., 2019, ADV ELECTRON MATER, V6
  • [5] Multifunctional conductive hydrogels and their applications as smart wearable devices
    Chen, Zhen
    Chen, Yujie
    Hedenqvist, Mikael S.
    Chen, Chi
    Cai, Chao
    Li, Hua
    Liu, Hezhou
    Fu, Jun
    [J]. JOURNAL OF MATERIALS CHEMISTRY B, 2021, 9 (11) : 2561 - 2583
  • [6] Multiple-Stimuli-Responsive and Cellulose Conductive Ionic Hydrogel for Smart Wearable Devices and Thermal Actuators
    Chen, Zhen
    Liu, Jing
    Chen, Yujie
    Zheng, Xu
    Liu, Hezhou
    Li, Hua
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (01) : 1353 - 1366
  • [7] Processable, Ion-Conducting Hydrogel for Flexible Electronic Devices with Self-Healing Capability
    Das, Sujoy
    Martin, Patrick
    Vasilyev, Gleb
    Nandi, Ramesh
    Amdursky, Nadav
    Zussman, Eyal
    [J]. MACROMOLECULES, 2020, 53 (24) : 11130 - 11141
  • [8] Bioinspired, nucleobase-driven, highly resilient, and fast-responsive antifreeze ionic conductive hydrogels for durable pressure and strain sensors
    Di, Xiang
    Li, Jian
    Yang, Mingming
    Zhao, Qian
    Wu, Guolin
    Sun, Pingchuan
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (36) : 20703 - 20713
  • [9] Stretchable and Soft Electronics using Liquid Metals
    Dickey, Michael D.
    [J]. ADVANCED MATERIALS, 2017, 29 (27)
  • [10] Antibacterial, Self-Adhesive, Recyclable, and Tough Conductive Composite Hydrogels for Ultrasensitive Strain Sensing
    Fan, Ling
    Xie, Liang
    Zheng, Yaping
    Wei, Daixu
    Yao, Dongdong
    Zhang, Jing
    Zhang, Tuodi
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (19) : 22225 - 22236