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Robust and flexible strain sensors based on dual physically cross-linked double network hydrogels for monitoring human-motion

机译:基于双物理交联双网络水凝胶的鲁棒和柔性应变传感器,用于监测人类运动

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摘要

Soft, stretchable, and elastic hydrogels have recently attracted immense interest due to their potential applications in wearable strain sensors. However, most of hydrogel-based sensors exhibit poor mechanical properties. Here, a robust, flexible and strain-sensitive conductive wearable sensor is prepared based on dual physically cross-linked double network hydrogels consisting of core-shell hybrid nanoparticles cross-linked polyacrylamide as first network and Ca2+ cross-linked alginate as second network. Dynamic physical cross-linking as sacrifice bonds can effectively dissipate energy and reconstruct the network structure, endowing hydrogels with high strength, toughness, stretchability and excellent self-recovery properties. Moreover, the hydrogels exhibit outstanding strain sensitive behavior with repeatable, stable, and precise changes in resistance signals. Based on the excellent strain sensitivity, the hydrogel can be assembled as a wearable strain sensor to monitor joint motions such as finger, wrist, elbow, neck, and knee joints, and even the slight motions including breathing and speaking. Thus, the tough, anti-fatigue, self-recovery and conductive hydrogels have promising potential as soft, high-performance and flexible wearable strain sensor for soft robots, biomimetic prostheses, human activity monitoring and health-monitoring systems.
机译:由于其在可穿戴应变传感器中的潜在应用,柔软,可伸展和弹性水凝胶最近引起了巨大的利益。然而,大多数基于水凝胶的传感器表现出差的机械性能。这里,基于由核 - 壳杂化纳米粒子的双物理交联双网络水凝胶作为第一网络和CA2 +作为第二网络的交联藻酸盐作为第二网络,制备稳健的柔性和应变敏感的导电可穿戴式传感器。动态物理交联作为牺牲键可以有效地散发能量并重建网络结构,具有高强度,韧性,拉伸性和优异的自我回收性能的流水凝胶。此外,水凝胶具有可重复,稳定,电阻信号的精确变化的出色应变敏感行为。基于出色的应变灵敏度,水凝胶可以作为可穿戴应变传感器组装,以监测手指,手腕,弯头,颈部和膝关节等关节运动,甚至包括呼吸和说话的轻微运动。因此,坚韧,抗疲劳,自我回收和导电水凝胶具有具有柔软,高性能和柔性可佩戴传感器的柔软机器人,仿生假体,人类活动监测和健康监测系统的潜力。

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