Multifunctional ionic conductive hydrogels based on gelatin and 2-acrylamido-2-methylpropane sulfonic acid as strain sensors

磺酸 材料科学 自愈水凝胶 离子键合 拉伤 明胶 复合材料 化学工程 导电体 高分子化学 有机化学 化学 离子 解剖 医学 工程类 生物化学
作者
Xiaotong Li,Liqin Cao,Liu-ping Chen
出处
期刊:Biochemical Engineering Journal [Elsevier BV]
卷期号:187: 108606-108606 被引量:22
标识
DOI:10.1016/j.bej.2022.108606
摘要

Stretchable hydrogels have the potential as alternatives to wearable flexible sensors and electrolyte membranes for soft energy storage devices. However, a challenge in the design of functional hydrogel with comprehensive performances including anti-freezing, favorable reusability, conductivity, flexibility, antibacterial property, biocompatibility, and omnidirectional strain sensitivity, still exists. Herein, inspired by heparin-mimetic gel, a novel double-network conductive hydrogel simultaneous with good mechanical properties, adhesion properties, frost resistance, self-healing properties, and some antibacterial properties were prepared by adding 2-acrylamido-2-methylpropanesulfonic acid, gelatin (Gel) as interpenetrating chains, and glycerol in the presence of lithium chloride and N,N '-methylenebisacrylamide as crosslinker. The hydrogels have high tensile properties (1750%) and fatigue resistance . In addition, the Gel-based sulfonated hydrogel has high electrical conductivity (2.04 S/m), a faster response time (290 ms), and significant frost resistance (−32 °C). The resulting transparent composite hydrogel successfully brings a strong synergistic advantage of adhesion strength between multiple substrates. Meanwhile, the high sensitivity of the hydrogel allows monitoring of various human movements, including large-scale joint flexion, and minute articulation, breathing, heartbeat, and pulse beat. This antibacterial, self-adhesive, and conductive composite hydrogel has promising applications in the field of flexible wearable and electronic skin.
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