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首页> 外文期刊>Materials Chemistry Frontiers >Highly compressible hydrogel sensors with synergistic long-lasting moisture, extreme temperature tolerance and strain-sensitivity properties
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Highly compressible hydrogel sensors with synergistic long-lasting moisture, extreme temperature tolerance and strain-sensitivity properties

机译:高度压缩的水凝胶的传感器协同持久的水分,极端温度公差和strain-sensitivity属性

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With increasing interest and demand for wearable electronic skin sensors for human–machine inter- actions or personal health detection, fabricating a mechanically stiff, long-lasting moisture, high ionic conductivity, and extreme-temperature tolerant hydrogel electrolyte that maximally mimics the human skin is necessary, but remains a challenge. In this work, a dual-crosslinked hydrogel electrolyte was fabricated by simply immersing a photo-crosslinked polyvinyl alcohol (PVA-W) hydrogel into a tannic acid (TA)/NaCl/glycerin/H2O solvent. The utilization of a glycerin/H2O binary solvent not only significantly promotes the free diffusion of TA into the PVA-W hydrogel network, which could generate a high-mechanical-strength, homogeneous, and transparent hydrogel, but also effectively prevents the crystallization and evaporation of free water owing to the strong hydrogen bonding interactions. The constructed hydrogel electrolyte, named PT-GW, exhibits variable compressive stress from 0.37 to 9.85 MPa upon adjusting the TA concentration, and high compressibility and fatigue resistance over a wide temperature range from 20 to 60 1C, while retaining 90% of the original weight at 60 1C. The ionic conductivity of the PT100-GW hydrogel electrolyte retains a high value of 1.13 S m1 at 60 1C and 0.12 S m1 at 20 1C. Furthermore, this hydrogel sensor could precisely detect human joint motion and displays strain-dependence properties even in harsh environments. It is envisioned that this easily- prepared, low-cost and high-performance hydrogel electrolyte could a candidate for application in fields requiring multifunctional flexible electronic materials, such as biosensors, energy storage devices, and wearable devices.
机译:随着对可穿戴的兴趣和需求电子皮肤传感器人机国米-行动或个人健康检测、制造一个机械僵硬,持久的水分,高离子电导率和极端温度最大限度的宽容水凝胶电解质模拟人体皮肤是必要的,但仍然是一个挑战。水凝胶电解质是只是臆造出来的沉浸一个photo-crosslinked聚乙烯醇(PVA-W)水凝胶成鞣酸(TA) /生理盐水/甘油/水溶剂。甘油/水二元溶剂不仅显著促进自由扩散的助教到PVA-W水凝胶网络,这可能生成一个机械强度高、均匀和透明的水凝胶,但也有效防止的结晶和蒸发自由水由于强烈的氢键交互。电解质,名叫PT-GW,展品变量压力从0.37到9.85 MPa调整助教浓度和高压缩性和抗疲劳强度宽温度范围从20到60 1 c保留90%的原始体重60 1 c。的离子电导率PT100-GW水凝胶电解液保留1.13 m1的高价值60 1 0.12 c和S m1在20 1 c。水凝胶传感器可以精确地检测人类关节运动和显示strain-dependence即使在恶劣的环境属性。设想,这很容易准备,低成本和高性能水凝胶电解质能候选应用程序领域的要求多功能柔性电子材料,如生物传感器、能源存储设备可穿戴设备。

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