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>Highly Sensitive and Flexible Capacitive Pressure Sensors Combined with Porous Structure and Hole Array Using Sacrificial Templates and Laser Ablation
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Highly Sensitive and Flexible Capacitive Pressure Sensors Combined with Porous Structure and Hole Array Using Sacrificial Templates and Laser Ablation
Flexible, wearable pressure sensors offer numerous benefits, including superior sensing capabilities, a lightweight and compact design, and exceptional conformal properties, making them highly sought after in various applications including medical monitoring, human–computer interactions, and electronic skins. Because of their excellent characteristics, such as simple fabrication, low power consumption, and short response time, capacitive pressure sensors have received widespread attention. As a flexible polymer material, polydimethylsiloxane (PDMS) is widely used in the preparation of dielectric layers for capacitive pressure sensors. The Young’s modulus of the flexible polymer can be effectively decreased through the synergistic application of sacrificial template and laser ablation techniques, thereby improving the functionality of capacitive pressure sensors. In this study, a novel sensor was introduced. Its dielectric layer was developed through a series of processes, including the use of a sacrificial template method using NaCl microparticles and subsequent CO2 laser ablation. This porous PDMS dielectric layer, featuring an array of holes, was then sandwiched between two flexible electrodes to create a capacitive pressure sensor. The sensor demonstrates a sensitivity of 0.694 kPa−1 within the pressure range of 0–1 kPa and can effectively detect pressures ranging from 3 Pa to 200 kPa. The sensor demonstrates stability for up to 500 cycles, with a rapid response time of 96 ms and a recovery time of 118 ms, coupled with a low hysteresis of 6.8%. Furthermore, our testing indicates that the sensor possesses limitless potential for use in detecting human physiological activities and delivering signals.
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机译:柔性可穿戴压力传感器具有许多优点,包括卓越的传感能力、轻巧紧凑的设计以及卓越的保形特性,使其在各种应用中备受追捧,包括医疗监测、人机交互和电子皮肤。电容式压力传感器由于其制造简单、功耗低、响应时间短等优异特性而受到广泛关注。作为一种柔性聚合物材料,聚二甲基硅氧烷 (PDMS) 广泛用于制备电容式压力传感器的介电层。通过牺牲模板和激光烧蚀技术的协同应用,可以有效降低柔性聚合物的杨氏模量,从而提高电容式压力传感器的功能。在这项研究中,引入了一种新型传感器。它的介电层是通过一系列过程开发的,包括使用 NaCl 微粒的牺牲模板方法和随后的 CO2 激光烧蚀。然后将这个具有一系列孔的多孔 PDMS 介电层夹在两个柔性电极之间,以形成电容式压力传感器。该传感器在 0-1 kPa 的压力范围内表现出 0.694 kPa-1 的灵敏度,可以有效检测 3 Pa 至 200 kPa 的压力范围。该传感器具有高达 500 次循环的稳定性,具有 96 ms 的快速响应时间和 118 ms 的恢复时间,以及 6.8% 的低滞后性。此外,我们的测试表明,该传感器在检测人类生理活动和传递信号方面具有无限的潜力。
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