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Self-powered piezoionic strain sensor toward the monitoring of human activities

机译:自供电式压电应变传感器,用于监测人类活动

摘要

Wearable sensors for the detection of human activities including subtle physiological signals and large-scale body motion as well as distinguishing the motion direction are highly desirable, but still a challenge. A flexible wearable piezoionic strain sensor based on the ionic polymer membrane sandwiched between two conductive electrodes is developed. This ionic polymer sensor can generate electrical signal output (≈mV) with rapid response (≈50 ms) under the applied bending deformation due to the internal mobile ion redistribution. Compared with the currently studied resistive and capacitive sensors, this sensor can generate sensing signals without the requirement of additional power supply, and is able to distinguish the direction of the bending strain by observing the direction of generated electrical signals. For the sensor with metallic electrode, an output voltage of 1.3 mV is generated under a bending-induced strain of 1.8%, and this voltage can be largely increased when replacing the metallic electrodes by graphene composites. After simple encapsulation of the piezoionic sensor, a wearable sensor is constructed and succeeded in monitoring the diverse human activities ranging from complex large scale multidimensional motions to subtle signals, including wrist bending with different directions, sitting posture sensing, pulse wave, and finger touch.
机译:非常需要用于检测包括微妙的生理信号和大范围人体运动以及区分运动方向的人类活动的可穿戴传感器,但这仍然是一个挑战。基于夹在两个导电电极之间的离子聚合物膜的柔性可穿戴压电应变传感器的开发。由于内部移动离子的重新分配,在施加的弯曲变形下,该离子聚合物传感器可以产生具有快速响应(≈50ms)的电信号输出(≈mV)。与目前研究的电阻式和电容式传感器相比,该传感器可以产生感测信号,而无需额外的电源,并且可以通过观察产生的电信号的方向来区分弯曲应变的方向。对于带有金属电极的传感器,在1.8%的弯曲感应应变下会产生1.3 mV的输出电压,当用石墨烯复合材料代替金属电极时,可以大大提高该电压。在简单封装了压电传感器之后,便构建了一种可穿戴式传感器,并成功地监视了各种人类活动,从复杂的大规模多维运动到微妙的信号,包括不同方向的手腕弯曲,坐姿感测,脉搏波和手指触摸。

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