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Flexible Piezoelectric Nanofibers/Polydimethylsiloxane-Based Pressure Sensor for Self-Powered Human Motion Monitoring

机译:柔性压电纳米纤维/聚二甲基硅氧烷基压力传感器,用于自动人体运动监测

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摘要

Self-powered wearable devices have attracted significantly increased attention in human motion monitoring. These flexible physical sensors conformally attach to the surface of the skin to provide new applications in human-activity monitoring. Herein, a highly flexible and self-powered piezoelectric pressure sensor for real-time human motion detecting using a piezoelectric thin film with high filling ratio of lead zirconate titanate (PZT) nanofibers (NFs) in polydimethylsiloxane (PDMS) is reported. Due to the large dielectric constant of PZT and elastic properties of PDMS, the sensor performs in a wide linear region (1.25-250 kPa) with great linearity (pressure-voltage 0.9909) and good reproducibility over 2000 cycles. Using the sensor, various human body motions are detected, including joint bending, subtle/large wrist deformations, wrist and some common sporting movements. In addition, a sensor array is successfully developed to realize motion tracking, showing strong potential for application in personal recognition.
机译:自动穿戴设备在人类运动监测中引起了显着增加的关注。这些柔性物理传感器共形地连接到皮肤表面,以提供人类活动监测中的新应用。这里,报道了使用具有高填充率(PDM)中具有高锆酯(PDMS)(PDMS)的具有高填充比的压电薄膜的实时人体运动检测的高度柔性和自供电的压电压力传感器。由于PZT的介电常数和PDMS的弹性特性,传感器在宽的线性区域(1.25-250kPa)中具有较大的线性度(压力 - 电压0.9909),并且超过2000次循环的良好再现性。使用传感器,检测到各种人体运动,包括联合弯曲,微妙/大腕变形,手腕和一些常见的体育运动。此外,成功开发了传感器阵列以实现运动跟踪,显示个人识别中的应用潜力很大。

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