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首页> 外文期刊>ACS applied materials & interfaces >Ultrastretchable Wearable Strain and Pressure Sensors Based on Adhesive, Tough, and Self-healing Hydrogels for Human Motion Monitoring
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Ultrastretchable Wearable Strain and Pressure Sensors Based on Adhesive, Tough, and Self-healing Hydrogels for Human Motion Monitoring

机译:基于粘合剂,坚韧和自愈合水凝胶的超可穿戴应变和压力传感器,用于人类运动监测

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Currently, flexible wearable hydrogel-based sensors have attracted considerable attention due to their promising applications in a variety of fields. However, concurrently integrating toughness, adhesiveness, self-healing ability, and conductivity into the hydrogel is still a great challenge. Here, casein sodium salt from bovine milk (sodium casein, SC) and polydopamine (PDA, inspired by mussels) were successfully introduced into the polyacrylamide (PAAm) hydrogel system to fabricate a tough and adhesive SCPDA hydrogel. The hydrogel exhibits splendidly reversible adhesive behavioral bonding toward various materials and even human skin. Moreover, based on the dynamic cross-linking of SC and PDA in the system, the hydrogel has superstretching ability, excellent fatigue resistance, and rapid self-healing ability. In addition, the existence of sodium ions also endowed the SCPDA hydrogel with sensitive deformation-dependent conductivity to act as a flexible strain and pressure sensor for directly monitoring large-scale human motions (e.g., joint bending) and tiny physiological signals (e.g., speaking and breathing). Therefore, the strategy would broaden the path of a new generation of hydrogel-based sensors for wide applications.
机译:目前,由于其在各种领域的有前途的应用,灵活的可穿戴水凝胶的传感器引起了相当大的关注。然而,同时整合韧性,粘合性,自我愈合能力,以及进入水凝胶的电导率仍然是一个很大的挑战。这里,成功地将来自牛奶(酪蛋白,SC)和聚二胺(PDA的PDA)的钠盐成功地引入聚丙烯酰胺(Paam)水凝胶系统中以制造坚韧和粘合的SCPDA水凝胶。水凝胶展示了朝各种材料甚至人体皮肤的恒定可逆的粘合剂行为键合。此外,基于系统中的SC和PDA的动态交联,水凝胶具有超凝固能力,优异的疲劳性和快速的自我愈合能力。此外,钠离子的存在还赋予SCPDA水凝胶具有敏感的变形依赖性电导率,以充当柔性应变和压力传感器,用于直接监测大规模人类运动(例如,关节弯曲)和微小的生理信号(例如,说话和呼吸)。因此,该策略将扩大用于广泛应用的新一代水凝胶的传感器的路径。

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