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Highly Sensitive Pressure Sensor Based on Elastic Conductive Microspheres.


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-1 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.

SUBMITTER: Li Z 

PROVIDER: S-EPMC10934857 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Highly Sensitive Pressure Sensor Based on Elastic Conductive Microspheres.

Li Zhangling Z   Guan Tong T   Zhang Wuxu W   Liu Jinyun J   Xiang Ziyin Z   Gao Zhiyi Z   He Jing J   Ding Jun J   Bian Baoru B   Yi Xiaohui X   Wu Yuanzhao Y   Liu Yiwei Y   Shang Jie J   Li Runwei R  

Sensors (Basel, Switzerland) 20240302 5


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 develope  ...[more]

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