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首页> 外文期刊>ACS applied materials & interfaces >Topologically Enhanced Dual-Network Hydrogels with Rapid Recovery for Low-Hysteresis, Self-Adhesive Epidemic Electronics
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Topologically Enhanced Dual-Network Hydrogels with Rapid Recovery for Low-Hysteresis, Self-Adhesive Epidemic Electronics

机译:拓扑增强双网络水凝胶,具有快速恢复的低滞后,自粘疫情电子产品

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摘要

Dual-network conductive hydrogels have drawn wide attention in epidemic electronics such as epidemic sensors and electrodes because of their inherent low Young’s modulus, high skin-compliance, and tunable mechanical strength. However, it is still full of challenges to gain a dual-network hydrogel with high stretchability, low hysteresis, and skin-adhesive performance simultaneously. Herein, to address this issue, a novel dual-network hydrogel (denoted as PAa hydrogel) with polyacrylamide as the first network and topologically entangled polydopamine as the secondary network was prepared through a facile gel-phase in situ self-polymerization and soaking treatment. Benefiting from the topological enhancement as well as the synergetic effects of hydrogen bonds and metal coordination bonds, low modulus (~10 kPa), excellent stretchability (1090.8%), high compression (90%), negligible hysteresis (η = 0.019, energy loss coefficient), rapid recovery in seconds, and self-adhesion are obtained in the PAa hydrogels. To demonstrate their practical use, a states-independent and skin-adhesive epidemic sensor was successfully attached on human skin for motion detection. What is more, by using the hydrogel as an epidemic electrode, electromyogram signals were accurately detected and wirelessly transmitted to a smart phone. This work offers a new insight to understand the strengthening mechanism of dual network hydrogels and a design strategy for both epidemic sensors and electrodes.
机译:双网络导电水凝胶由于其固有的低杨氏模量、高皮肤顺应性和可调的机械强度,在流行病传感器和电极等流行病电子学领域引起了广泛关注。然而,同时获得具有高拉伸性、低滞后性和皮肤粘附性能的双网络水凝胶仍然充满挑战。在此,为了解决这个问题,通过简单的凝胶相原位自聚合和浸泡处理,制备了一种以聚丙烯酰胺为第一网络、拓扑缠结的聚多巴胺为第二网络的新型双网络水凝胶(称为PAa水凝胶)。得益于拓扑增强以及氢键和金属配位键的协同效应,PAa水凝胶具有低模量(~10 kPa)、优异的拉伸性能(1090.8%)、高压缩性能(90%)、可忽略的滞后性(η=0.019,能量损失系数)、秒内快速恢复和自粘附性。为了证明它们的实际应用,一个独立于状态且具有皮肤粘性的流行病传感器被成功地安装在人体皮肤上用于运动检测。此外,通过将水凝胶用作流行病电极,肌电图信号被准确检测并无线传输到智能手机。这项工作为理解双网络水凝胶的强化机制以及流行病传感器和电极的设计策略提供了新的见解。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2021年第10期|共10页
  • 作者单位

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

    College of Automation Science and Engineering South China University of Technology;

    College of Automation Science and Engineering South China University of Technology;

    College of Materials Science and Engineering Key Lab of Guangdong Province for High Property and Functional Macromolecular Materials South China University of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    dual network hydrogel; topological entanglement; low hysteresis; epidemic sensor; self-adhesive;

    机译:双网络水凝胶;拓扑纠缠;低滞后;流行病传感器;自粘;

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