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Robust Conductive Hydrogels with Ultrafast Self-Recovery and Nearly Zero Response Hysteresis for Epidermal Sensors

机译:具有超快自恢复的强大导电水凝胶和表皮传感器的近零零响应滞后

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摘要

Robust conductive hydrogels are in great demand for the practical applications of smart soft robots, epidermal electronics, and human–machine interactions. We successfully prepared nanoparticles enhanced polyacrylamide/hydroxypropyl guar gum/acryloyl-grafted chitosan quaternary ammonium salt/calcium ions/SiO2 nanoparticles (PHC/Ca2+/SiO2 NPs) conductive hydrogels. Owing to the stable chemical and physical hybrid crosslinking networks and reversible non-covalent interactions, the PHC/Ca2+/SiO2 NPs conductive hydrogel showed good conductivity (~3.39 S/m), excellent toughness (6.71 MJ/m3), high stretchability (2256%), fast self-recovery (80% within 10 s, and 100% within 30 s), and good fatigue resistance. The maximum gauge factor as high as 66.99 was obtained, with a wide detectable strain range (from 0.25% to 500% strain), the fast response (25.00 ms) and recovery time (86.12 ms), excellent negligible response hysteresis, and good response stability. The applications of monitoring the human’s body movements were demonstrated, such as wrist bending and pulse tracking.
机译:强大的导电水凝胶对智能软机械,表皮电子和人机相互作用的实际应用。我们成功地制备了纳米颗粒增强型聚丙烯酰胺/羟丙基瓜氨酰胶/丙烯酰包覆壳聚糖季铵盐/钙离子/ SiO2纳米颗粒(PHC / CA2 + / SIO2 NPS)导电水凝胶。由于化学和物理杂交交联网络和可逆的非共价相互作用,PHC / CA2 + / SiO2 NPS导电水凝胶显示出良好的导电性(〜3.39 s / m),优异的韧性(6.71mJ / m3),高拉伸性(2256 %),快速自恢复(10秒内80%,30秒内为100%),耐疲劳性良好。获得高达66.99的最大规格因子,具有宽可检测的应变范围(从0.25%至500%菌株),快速响应(25.00毫秒)和恢复时间(86.12ms),优异可忽略的响应滞后和良好的反应稳定。监测人体运动的应用被证明,如手腕弯曲和脉冲跟踪。

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