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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Development of high-strength, tough, and self-healing carboxymethyl guar gum-based hydrogels for human motion detection
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Development of high-strength, tough, and self-healing carboxymethyl guar gum-based hydrogels for human motion detection

机译:开发高强度,坚韧和自愈的羧甲基瓜尔胶胶胶胶,用于人体运动检测

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Self-healing hydrogels have attracted intense attention because of their potential applications in ionic strain sensors. However, most self-healing hydrogel sensors exhibit poor mechanical properties due to the inherent compromise between the dynamic interactions for healing and steady interactions for mechanical strength. Here, strong, tough and self-healing ionic conductive hydrogel sensors were prepared based on synergistic multiple noncovalent bonds among carboxymethyl guar gum (CMGG), poly(acrylic acid) (PAA), and ferric metal ions (Fe3+) in a covalent polymer network. The incorporated CMGG, mediated by metal-ligand interactions, acts as dynamic cross-linkers, endowing the ionic hydrogels with superior mechanical properties. In addition, the reversible and dynamic nature of the multiple metal-ligand interactions accounts for the good self-recovery capabilities, remarkable mechanical properties, and high self-healing efficiencies. Furthermore, the ionic conductive hydrogels displayed good strain sensitivity with repeatable, reliable, and precise changes of resistance signals. Based on these merits, the hydrogel could be assembled as a flexible strain sensor to monitor and distinguish various human motions. We expect that this facile method of incorporating the biocompatible and biodegradable CMGG for the design of strong, tough, self-healing and ionic conductive hydrogels may have promising potential for flexible strain sensors for human motion monitoring.
机译:由于离子菌株传感器中的潜在应用,自我愈合的水凝胶引起了强烈的关注。然而,由于用于愈合和机械强度的稳定相互作用之间的动态相互作用之间的固有折衷,大多数自我愈合的水凝胶传感器具有差的机械性能。这里,基于羧甲基瓜尔胶(CMGG),聚(丙烯酸)(PAA)和共价聚合物网络中的铁金属离子(Fe3 +)之间的协同多重非共价键来制备强度,坚韧和自愈的离子导电水凝胶传感器。通过金属 - 配体相互作用介导的掺入CMGG起作用作动态交联剂,赋予具有优异机械性能的离子水凝胶。此外,多金属配体相互作用的可逆性和动态性质占良好的自我回收能力,显着的机械性能和高自我愈合效率。此外,离子导电水凝胶具有可重复,可靠,电阻信号的精确变化的良好应变灵敏度。基于这些优点,水凝胶可以作为柔性应变传感器组装,以监测和区分各种人类运动。我们预计该容纳方法可以将生物相容性和可生物降解的CMGG掺入强,坚韧,自愈和离子导电水凝胶的设计可能具有对人类运动监测的柔性应变传感器的有希望的潜力。

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