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使用液态金属调制的氮掺杂石墨烯纳米片的超灵敏压力传感器海绵

Ultrasensitive Pressure Sensor Sponge Using Liquid Metal Modulated Nitrogen-Doped Graphene Nanosheets.

作者信息

Li Yuan, Cui Yanguang, Zhang Mingjia, Li Xiaodong, Li Ru, Si Wenyan, Sun Quanhu, Yu Lingmin, Huang Changshui

机构信息

Beijing National Laboratory for Molecular Sciences, Organic Solids Laboratory, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

National Laboratory of Solid State Microstructures, College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210023, China.

出版信息

Nano Lett. 2022 Apr 13;22(7):2817-2825. doi: 10.1021/acs.nanolett.1c04976. Epub 2022 Mar 25.

Abstract

Wearable pressure sensors are crucial for real-time monitoring of human activities and biomimetic robot status. Here, the ultrasensitive pressure sensor sponge is prepared by a facile method, realizing ultrasensitive pressure sensing for wearable health monitoring. Since the liquid metal in the sponge-skeleton structure under pressure is conducive to adjust the contact area with nitrogen-doped graphene nanosheets and thus facilitates the charge transfer at the interface, such sensors exhibit a fast response and recovery speed with the response/recovery time 0.41/0.12 s and a comprehensive response range with a sensitivity of up to 476 KPa. Notably, the liquid metal-based spongy pressure sensor can accurately monitor the human body's pulse, the pressure on the skin, throat swallowing, and other activities in real time, demonstrating a broad application prospect. Those results provide a convenient and low-cost way to fabricate easily perceptible pressure sensors, expanded the application potential of liquid metal-based composites for future electronic skin development.

摘要

可穿戴压力传感器对于实时监测人类活动和仿生机器人状态至关重要。在此,通过一种简便方法制备了超灵敏压力传感器海绵,实现了用于可穿戴健康监测的超灵敏压力传感。由于海绵骨架结构中的液态金属在压力作用下有利于调整与氮掺杂石墨烯纳米片的接触面积,从而促进界面处的电荷转移,此类传感器展现出快速的响应和恢复速度,响应/恢复时间为0.41/0.12秒,且具有高达476 KPa灵敏度的综合响应范围。值得注意的是,基于液态金属的海绵状压力传感器能够实时准确监测人体脉搏、皮肤压力、咽喉吞咽及其他活动,展现出广阔的应用前景。这些结果提供了一种便捷且低成本的方法来制造易于感知的压力传感器,拓展了基于液态金属的复合材料在未来电子皮肤开发中的应用潜力。

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