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Self-Healing Hydrogels as Flexible Sensor for Human Motion Monitoring

机译:自我修复水凝胶作为人体运动监测的灵活传感器

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Self-healing hydrogels were prepared by mixing the difunction- alized polyethylene glycol (DF-PEG) and chitosan (CS) in water. Due to the formation of Schiff base bond between DF-PEG and CS, the gelation could be realized in several seconds. Determined by the SEM showed that the hydrogel was composed of porous network structure. The dynamic formation and dissociation of Schiff base bond (-C=N-) between the aldehyde group of DF-PEG and amino group of CS initiated the excellent self-healing property and reversible pH responsivity of hydrogels. Additionally, the hydrogels had excellent ductility and toughness with the fracture strain and stress of 88.2% and 12.1 kPa. The hydrogels exhibited excellent strain sensing performance, which can be fabricated as the flexible sensor for real-time monitoring the large and delicate human motions. As a result, it is expected that the obtained self-healing hydrogels will broaden the application of gels in wearable electronics.
机译:通过在水中混合二维聚乙烯乙二醇(DF-PEG)和壳聚糖(CS)来制备自我修复水凝胶。 由于DF-PEG和CS之间的Schiff基键形成,因此可以在几秒钟内实现凝胶化。 由SEM确定,表明水凝胶由多孔网络结构组成。 DF-PEG和CS的氨基组之间的Schiff基键(-c = N-)的动态形成和解离,启动了出色的自我修复特性和水凝胶的可逆pH响应性。 此外,水凝胶具有出色的延展性和韧性,裂缝应变和应激为88.2%和12.1 kPa。 水凝胶表现出出色的应变感应性能,可以作为柔性传感器制造,用于实时监测大而精致的人类运动。 结果,预计获得的自我修复水凝胶将扩大凝胶在可穿戴电子中的应用。

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