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基于弹性导电微球的高灵敏度压力传感器。

Highly Sensitive Pressure Sensor Based on Elastic Conductive Microspheres.

作者信息

Li Zhangling, Guan Tong, Zhang Wuxu, Liu Jinyun, Xiang Ziyin, Gao Zhiyi, He Jing, Ding Jun, Bian Baoru, Yi Xiaohui, Wu Yuanzhao, Liu Yiwei, Shang Jie, Li Runwei

机构信息

CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

Zhejiang Province Key Laboratory of Magnetic Materials and Application Technology, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

出版信息

Sensors (Basel). 2024 Mar 2;24(5):1640. doi: 10.3390/s24051640.

Abstract

Elastic pressure sensors play a crucial role in the digital economy, such as in health care systems and human-machine interfacing. However, the low sensitivity of these sensors restricts their further development and wider application prospects. This issue can be resolved by introducing microstructures in flexible pressure-sensitive materials as a common method to improve their sensitivity. However, complex processes limit such strategies. Herein, a cost-effective and simple process was developed for manufacturing surface microstructures of flexible pressure-sensitive films. The strategy involved the combination of MXene-single-walled carbon nanotubes (SWCNT) with mass-produced Polydimethylsiloxane (PDMS) microspheres to form advanced microstructures. Next, the conductive silica gel films with pitted microstructures were obtained through a 3D-printed mold as flexible electrodes, and assembled into flexible resistive pressure sensors. The sensor exhibited a sensitivity reaching 2.6 kPa with a short response time of 56 ms and a detection limit of 5.1 Pa. The sensor also displayed good cyclic stability and time stability, offering promising features for human health monitoring applications.

摘要

弹性压力传感器在数字经济中发挥着关键作用,例如在医疗保健系统和人机交互方面。然而,这些传感器的低灵敏度限制了它们的进一步发展和更广泛的应用前景。通过在柔性压敏材料中引入微结构作为提高其灵敏度的常用方法,可以解决这个问题。然而,复杂的工艺限制了这些策略。在此,开发了一种具有成本效益且简单的工艺来制造柔性压敏薄膜的表面微结构。该策略涉及将MXene-单壁碳纳米管(SWCNT)与大规模生产的聚二甲基硅氧烷(PDMS)微球相结合,以形成先进的微结构。接下来,通过3D打印模具获得具有凹坑微结构的导电硅胶薄膜作为柔性电极,并组装成柔性电阻式压力传感器。该传感器的灵敏度达到2.6 kPa,响应时间短至56 ms,检测限为5.1 Pa。该传感器还表现出良好的循环稳定性和时间稳定性,为人体健康监测应用提供了有前景的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8f0/10934857/d506a3ece884/sensors-24-01640-g001.jpg

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