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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Flexible pressure sensing film based on ultrasensitive SWCNT/PDMS spheres for monitoring human pulse signals
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Flexible pressure sensing film based on ultrasensitive SWCNT/PDMS spheres for monitoring human pulse signals

机译:基于超灵敏SWCNT / PDMS球体的柔性压力传感膜,用于监测人体脉冲信号

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摘要

Flexible pressure sensors are essential components of electronic skins for future attractive applications ranging from human healthcare monitoring to biomedical diagnostics to robotic skins to prosthetic limbs. Here, we report a new kind of flexible pressure sensing film based on ultrasensitive single wall carbon nanotube (SWCNT)/polydimethylsiloxane (PDMS) spheres. These spheres with the diameter of 600 +/- 20 mm were prepared using the dipping method, and were further sandwiched by flexible electrodes using a stack of double-sided tape. The sensing mechanism of this device was analyzed by classic thin plate theory for circular plate deflection. Its sensitivity was further optimized by the synthesis of sensitive materials and geometrical design of device parameters. Ultimately, the developed sensing film exhibited a maximum sensitivity of 46.7% kPa(-1) to resistance, great durability over 15000 cycles, and very rapid mechanical responses (a few milliseconds). We also demonstrated that our sensing film can be used to detect the location and distribution of finger pressure, as well as to map the fingertip pulse signals, jugular venous pulse (JVP) signals and wrist pulse signals of the testers of different ages effectively.
机译:柔性压力传感器是电子皮肤的重要组成部分,对于从人体健康监护到生物医学诊断再到机器人皮肤再到假肢的未来有吸引力的应用来说,都是如此。在这里,我们报告一种新型的基于超灵敏单壁碳纳米管(SWCNT)/聚二甲基硅氧烷(PDMS)球的柔性压力传感膜。这些直径为600 +/- 20 mm的球体是使用浸渍法制备的,并使用一堆双面胶带用柔性电极进一步夹在中间。通过经典的薄板理论分析了该装置的感应机制,以了解圆板的挠度。通过敏感材料的合成和器件参数的几何设计,进一步优化了其灵敏度。最终,开发出的感测膜对电阻的最大灵敏度为46.7%kPa(-1),在15000次循环中具有出色的耐用性,并具有非常快的机械响应(几毫秒)。我们还证明了我们的传感膜可用于检测手指压力的位置和分布,以及有效映射不同年龄的测试者的指尖脉冲信号,颈静脉脉冲(JVP)信号和腕部脉冲信号。

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