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Thermo-responsive shape memory sensors based on tough, remolding and anti-freezing hydrogels

机译:基于坚韧,重折叠和抗冷冻水凝胶的热响应形状记忆传感器

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摘要

Recently, hydrogel-based sensors have been rapidly developed due to their excellent flexibility, stretchability and toughness. However, it is still necessary to develop a hydrogel sensor with shape memory and remolding performance for multi-field applications. Here, a dual physically cross-linked shape memory hydrogel sensor was fabricated via blending poly vinyl alcohol (PVA), cationic chitosan and graphene oxide in water and glycerol. The introduction of cationic chitosan endows the hydrogels with excellent electrical conductivity. Therefore, the hydrogel can be integrated as a strain sensor to repeatedly monitor human motions. Meanwhile, the hydrogel can be used as a thermo-responsive shape memory sensor by virtue of orientation of PVA molecular chains under force and disorientation after heating. Besides, the hydrogel possesses anti-freezing properties with mechanical flexibility at -20 degrees C. Due to the dual physical cross-linking, the hydrogels can effectively dissipate energy and reconstruct the network; thus, the hydrogels gain excellent strength and remolding properties. In a word, this strategy provides a feasible method to prepare multifunctional shape memory hydrogels applied as wearable strain sensors and shape memory sensors.
机译:最近,由于其优异的柔韧性,可拉伸性和韧性,基于水凝胶的传感器已经迅速开发。然而,仍然有必要开发一种具有形状存储器的水凝胶传感器,并为多场应用重新梳理性能。这里,通过在水和甘油中共混聚乙烯醇(PVA),阳离子壳聚糖和石墨烯氧化物,制造双物理交联形状记忆水凝胶传感器。阳离子壳聚糖的引入赋予水凝胶具有优异的导电性。因此,水凝胶可以作为应变传感器集成以重复监测人类运动。同时,通过在加热后的力和迷失方向上的PVA分子链的取向,水凝胶可以用作热响应形状记忆传感器。此外,水凝胶在-20℃下具有机械柔性的抗冻结性能。由于双重物理交联,水凝胶可以有效地耗散能量并重建网络;因此,水凝胶获得优异的强度和重折叠性能。总之,该策略提供了一种可行的方法,用于制备应用于可穿戴应变传感器和形状存储器传感器的多功能形状记忆水凝胶。

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