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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Bioinspired Dynamic Cross-Linking Hydrogel Sensors with Skin-like Strain and Pressure Sensing Behaviors
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Bioinspired Dynamic Cross-Linking Hydrogel Sensors with Skin-like Strain and Pressure Sensing Behaviors

机译:Bioinspired动态交联水凝胶传感器,具有皮肤状应变和压力传感行为

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摘要

Biomimetic skin-like electric materials have been rapidly developed for human-machine interfaces, health monitoring, and soft robots. However, achieving a combination of mechanical and sensory properties like those of human skin remains a challenge. Here, a bioinspired physical cross-linking hydrogel sensor is designed and fabricated on the basis of an ionic conductive hydrogel with hybrid latex particles in a physically cross-linked network. The hydrogels exhibit excellent mechanical adaptability similar to that of human skin, including a low modulus, excellent stretchability, robust elasticity, rapid self-recoverability, and a good antifatigue property. Moreover, the addition of LiCl gives the hydrogel ideal ionic conducive behavior as a high-performance wearable sensor. The hydrogel-based sensor exhibits high sensitivity (GF = 5.44) over a broad strain window (0.25-2000%), excellent pressure sensing capability, a rapid response time, negligible hysteresis, and good durability. As a result, the hydrogel sensor can monitor various human motions, including large-scale joint bending, running and jumping, and tiny phonating and breathing. Therefore, the strategy will broaden the path for the new generation of biomimetic sensors with skin-like mechanical and strain and pressure sensing performances.
机译:用于人机界面,健康监测和软机器人迅速开发了仿生皮等电力。然而,实现了像人皮肤那样的机械和感官属性的组合仍然是挑战。这里,基于物理交联网络中的具有杂交乳胶颗粒的离子导电水凝胶设计和制造生物悬浮的物理交联水凝胶传感器。水凝胶具有与人体皮肤相似的优异的机械适应性,包括低模量,优异的拉伸性,鲁棒弹性,快速的自我恢复性和良好的抗脱毛性。此外,LiCl的添加给水凝胶理想的离子有限行为作为高性能可穿戴传感器。水凝胶基传感器在宽菌株窗口(0.25-2000%),优异的压力传感能力,快速响应时间,可忽略不计的滞后以及良好的耐用性上具有高灵敏度(GF = 5.44)。结果,水凝胶传感器可以监测各种人类运动,包括大规模的关节弯曲,跑步和跳跃,并且微小的发音和呼吸。因此,该策略将拓宽具有皮肤状机械和应变和压力传感性能的新一代仿生传感器的路径。

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