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Highly Stretchable, Self-Healable and Self-Adhesive Double-Network Eutectogel Based on Gellan Gum and Polymerizable Deep Eutectic Solvent for Strain Sensing

机译:Highly Stretchable, Self-Healable and Self-Adhesive Double-Network Eutectogel Based on Gellan Gum and Polymerizable Deep Eutectic Solvent for Strain Sensing

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摘要

Recently, eutectogels have gained significant attention as promising materials for wearable devices. However, developing eutectogels with integrated stretchability, good toughness, self-healing, and self-adhesive properties through non-covalent scaffold assembly is a major challenge. In this study, a fully physically crosslinked double-network (DN) eutectogel was fabricated by exploiting the high solubility and gelation of gellan gum in a deep eutectic solvent (DES) to form the first physically crosslinked network and combining it with supramolecular poly (2-hydroxyethyl acrylate-choline chloride, HEA-ChCl). The resulting gel showed high stretchability (1835%), toughness (7.65 MJ m~(-3)), desirable ionic conductivity (0.41 mS cm~(-1)), adhesion, and high transparency. Assembling the gel into strain sensors allows precise monitoring of human motion (finger, wrist, elbow, and knee). The results of this study suggest that gellan gum/poly (ChCl-HEA) DN eutectogels have significant potential as highly sensitive and reliable strain sensors for wearable technology applications.
机译:最近,eutectogels获得意义重大注意作为可穿戴的前途的材料设备。集成的拉伸性,韧性好,自修复、自粘的属性通过非共价支架组装是一个主要的挑战。交联double-network (DN) eutectogel利用高溶解度和制作的结冷胶的凝胶深度低共熔溶剂(DES)形成第一物理交联网络,结合超分子聚(2-hydroxyethyl acrylate-choline氯,HEA-ChCl)。拉伸性(1835%)、韧性(7.65 MJm ~(3)),理想的离子电导率(0.41 mS厘米~(- 1))、附着力和高透明度。将凝胶组装成应变传感器允许人类运动的精确监测(手指,手腕、手肘和膝盖)。研究表明,结冷胶/聚(ChCl-HEA) DNeutectogels有非常巨大的潜力敏感和可靠的应变传感器可穿戴技术应用。

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