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Silver nanowires coated on cotton for flexible pressure sensors

机译:涂在棉上的银纳米线用于柔性压力传感器

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In this work, a simple dip-coating method is developed to form silver nanowire conductive networks on cotton fibers due to the hydrogen bonding between them, and conductive cotton sheets with high conductivity (10(-4)-10(-5) Omega cm) and durability (agitated for more than 1500 min) are obtained to construct flexible pressure sensors. The fabrication process is of low cost and can be easily scaled up, and the bio-based flexible pressure sensors show very high sensitivity (3.4 kPa(-1)), rapid response and relaxation time (<50 ms) and excellent stability (>5000 loading/unloading cycles). The working mechanism is theoretically studied and the results demonstrate that the layers of conductive cotton sheets play a key role in determining the performance of the flexible pressure sensors because it is closely related to the contact points. The flexible pressure sensors can effectively detect dynamic sound-driven vibrations (0.006 dB(-1)), gentle external forces and muscle motions, illustrating their extensive applications in various fields such as voice recognition and robotic systems.
机译:在这项工作中,开发了一种简单的浸涂方法,以在棉纤维上形成银纳米线导电网络,这是由于它们之间存在氢键作用,并且导电棉片具有高导电性(10(-4)-10(-5)Omega cm )和耐用性(搅拌超过1500分钟),以构建柔性压力传感器。制造过程成本低廉,并且易于扩展,基于生物的柔性压力传感器显示出极高的灵敏度(3.4 kPa(-1)),快速的响应和松弛时间(<50 ms)和出色的稳定性(> 5000个加载/卸载循环)。对工作机理进行了理论研究,结果表明,导电棉片的层在决定柔性压力传感器的性能方面起着关键作用,因为它与接触点密切相关。灵活的压力传感器可以有效检测动态声音驱动的振动(0.006 dB(-1)),柔和的外力和肌肉运动,从而说明了它们在语音识别和机器人系统等各个领域的广泛应用。

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