首页 / 院系成果 / 成果详情页

Healable, Degradable, and Conductive MXene Nanocomposite Hydrogel for Multifunctional Epidermal Sensors  期刊论文   WOS高被引论文 WOS热点论文

  • 编号:
    B22BD1F7888392BA2560C90A0149B555
  • 作者:
    Li, Xiaobin#[1]He, Lingzhang[1];Li, Yanfei(李延飞)[2]Chao, Mingyuan[1];Li, Mingkun[1];Wan, Pengbo(万鹏博)*[1]Zhang, Liqun(张立群)[1]
  • 语种:
    英文
  • 期刊:
    ACS NANO ISSN:1936-0851 2021 年 15 卷 4 期 (7765 - 7773) ; APR 27
  • 收录:
  • 关键词:
  • 摘要:

    Conductive hydrogels have emerged as promising material candidates for epidermal sensors due to their similarity to biological tissues, good wearability, and high accuracy of information acquisition. However, it is difficult to simultaneously achieve conductive hydrogel-based epidermal sensors with reliable healability for long-term usage, robust mechanical property, environmental degradability for decreased electronic waste, and sensing capability of the physiological stimuli and the electrophysiological signals. Herein, we propose the synthesis strategy of a multifunctional epidermal sensor based on the highly stretchable, self-healing, degradable, and biocompatible nanocomposite hydrogel, which is fabricated from the conformal coating of a MXene (Ti3C2Tx) network by the hydrogel polymer networks involving poly(acrylic acid) and amorphous calcium carbonate. The epidermal sensor can be employed to sensitively detect human motions with the fast response time (20 ms) and to serve as electronic skins for wirelessly monitoring the electrophysiological signals (such as the electromyogram and electrocardiogram signals). Meanwhile, the multifunctional epidermal sensor could be degraded in phosphate buffered saline solution, which could not cause any pollution to the environment. This line of research work sheds light on the fabrication of the healable, degradable, and electrophysiological signal-sensitive conductive hydrogel-based epidermal sensors with potential applications in human-machine interactions, healthy diagnosis, and smart robot prosthesis devices.

  • 推荐引用方式
    GB/T 7714:
    Li Xiaobin,He Lingzhang,Li Yanfei, et al. Healable, Degradable, and Conductive MXene Nanocomposite Hydrogel for Multifunctional Epidermal Sensors [J].ACS NANO,2021,15(4):7765-7773.
  • APA:
    Li Xiaobin,He Lingzhang,Li Yanfei,Chao Mingyuan,&Zhang Liqun.(2021).Healable, Degradable, and Conductive MXene Nanocomposite Hydrogel for Multifunctional Epidermal Sensors .ACS NANO,15(4):7765-7773.
  • MLA:
    Li Xiaobin, et al. "Healable, Degradable, and Conductive MXene Nanocomposite Hydrogel for Multifunctional Epidermal Sensors" .ACS NANO 15,4(2021):7765-7773.
  • 入库时间:
    6/6/2021 10:36:41 PM
  • 更新时间:
    6/6/2021 10:36:41 PM
浏览次数:163 下载次数:0
浏览次数:163
下载次数:0
打印次数:0
浏览器支持: Google Chrome   火狐   360浏览器极速模式(8.0+极速模式) 
返回顶部