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Polydopamine/polystyrene nanocomposite double-layer strain sensor hydrogel with mechanical, self-healing, adhesive and conductive properties

机译:具有机械,自愈,粘合和导电性能的聚多巴胺/聚苯乙烯纳米复合双层应变传感器水凝胶

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摘要

Inspired by the adhesion mechanism of natural mussels, polydopamine (PDA) has been widely studied and applied in hydrogels due to its good adhesion to various materials. In this work, a double-layer hydrogel constituted of an adhesive layer and a tough layer was successfully prepared via in-situ polymerization. Adding polystyrene particles into the tough layer could improve the mechanical properties, and the adhesion of various substrates could be achieved with PDA nanoparticles in the adhesive layer. Furthermore, lithium chloride was introduced into the tough layer to endow the bilayer hydrogels with electrical conductivity. Due to the hydrophobic association in the tough layer and hydrogen bond in the adhesive layer, the double-layer hydrogel exhibits self-healing properties. In addition, the NIR light response property of PDA was beneficial to self-healing properties. As a result, it has proved that the prepared bilayer hydrogel has excellent conductivity, toughness (0.18 MPa), adhesion and self-healing properties, which is an ideal flexible wearable strain sensor with high sensitivity and good repeatability, suitable for human motion signal detection.
机译:受天然贻贝的粘附机制启发,聚多巴胺(PDA)由于对各种材料具有良好的粘附性而被广泛研究并应用于水凝胶。在该工作中,通过原位聚合成功地制备了由粘合剂层和韧性层构成的双层水凝胶。将聚苯乙烯颗粒添加到韧性层中可以改善机械性能,而在粘合层中使用PDA纳米颗粒可以实现各种基材的粘合。此外,将氯化锂引入韧性层以赋予双层水凝胶导电性。由于韧性层中的疏水缔合和粘合剂层中的氢键,双层水凝胶表现出自修复性能。另外,PDA的NIR光响应特性有利于自我修复特性。结果证明,所制备的双层水凝胶具有优异的电导率,韧性(0.18MPa),附着力和自愈特性,是一种理想的柔性可穿戴应变传感器,具有高灵敏度和良好的重复性,适用于人体运动信号检测。

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