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首页> 外文期刊>ACS applied materials & interfaces >Self-Healing, Highly Sensitive Electronic Sensors Enabled by Metal-Ligand Coordination and Hierarchical Structure Design
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Self-Healing, Highly Sensitive Electronic Sensors Enabled by Metal-Ligand Coordination and Hierarchical Structure Design

机译:通过金属配体协调和等级结构设计使能自愈,高敏感的电子传感器

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摘要

Electronic sensors capable of capturing mechanical deformation are highly desirable for the next generation of artificial intelligence products. However, it remains a challenge to prepare self-healing, highly sensitive, and cost-efficient sensors for both tiny and large human motion monitoring. Here, a new kind of self-healing, sensitive, and versatile strain sensors has been developed by combining metal-ligand chemistry with hierarchical structure design. Specifically, a self-healing and nanostructured conductive layer is deposited onto a self-healing elastomer substrate cross-linked by metal-ligand coordinate bonds, forming a hierarchically structured sensor. The resultant sensors exhibit high sensitivity, low detection limit (0.05% strain), remarkable self-healing capability, as well as excellent reproducibility. Notably, the self-healed sensors are still capable to precisely capture not only tiny physiological activities (such as speech, swallowing, and coughing) but also large human motions (finger and neck bending, touching). Moreover, harsh treatments, including bending over 50000 times and mechanical washing, could not influence the sensitivity and stability of the self-healed sensors in human motion monitoring. This proposed strategy via alliance of metal-ligand chemistry and hierarchical structure design represents a general approach to manufacturing self-healing, robust sensors, and other electronic devices.
机译:能够捕获机械变形的电子传感器对于下一代人工智能产品非常理想。然而,为微小和大型人体运动监测制备自我愈合,高度敏感和成本效益的传感器仍然是一项挑战。这里,通过将金属配体化学与等级结构设计组合来开发了一种新的自我愈合,敏感和多功能的应变传感器。具体地,将自愈合和纳米结构的导电层沉积在通过金属 - 配体坐标键交联的自愈合弹性体基质上,形成分层结构传感器。所得传感器表现出高灵敏度,低检测限(菌株),显着的自我愈合能力,以及出色的再现性。值得注意的是,自我愈合的传感器仍然能够精确地捕捉到微小的生理活动(如言语,吞咽和咳嗽),而且还有大型人类运动(手指和颈部弯曲,触摸)。此外,苛刻的治疗方法,包括弯曲超过50000次和机械洗涤,不能影响人人运动监测中自愈传感器的灵敏度和稳定性。这种通过金属配体化学和分层结构设计的联盟的策略代表了制造自我愈合,鲁棒传感器和其他电子设备的一般方法。

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