材料科学
纤维素
聚丙烯酸
胶粘剂
丙烯酸
复合材料
离子键合
光致聚合物
紫外线固化
自愈水凝胶
电极
丙烯酸树脂
聚合物
化学工程
固化(化学)
高分子化学
聚合
化学
涂层
离子
有机化学
单体
物理化学
图层(电子)
工程类
作者
Xueli Fu,Yixiang Chen,Wei Wang,Dan Yu
标识
DOI:10.1016/j.ijbiomac.2022.07.115
摘要
Conductive hydrogels have been extensively studied because of flexibility and skin-like capability to be used as biopotential electrodes for wearable health monitoring. However, they may suffer from poor mechanical properties and stability problems when used in practical applications caused by water evaporation. Herein, we prepared self-adhesive, transparent, flexible and robust ionic gels that can conformal contact with the skin used as biopotential electrodes for precise health monitoring. Cellulose based iogels were prepared by dissolving cellulose using [Bmim]Cl at 100 °C followed by in situ Ultraviolet light photopolymerization of acrylic acid by adding a mixture of acrylic acid and 2-hydroxy-2-methylpropiophenone. Cellulose/polyacrylic acid-based ionic gels-2 (BCELIG-2) has a Young's modulus of 0.2 MPa, a strain at break of 226 %, a modulus of elasticity of 0.1 MPa, and a toughness of 22.5 MJ m-3. Fixing the strain at 40 %, the ionic gels can recover to their original length after ten tensile-unloading cycles. They can accurately detect subtle physical motions such as arterial pulsations, which can provide important cardiovascular information.
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