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Self-Powered Wearable Pressure Sensors with Enhanced Piezoelectric Properties of Aligned P(VDF-TrFE)/MWCNT Composites for Monitoring Human Physiological and Muscle Motion Signs

机译:具有对准的P(VDF-TrFE)/ MWCNT复合材料的增强压电性能的自供电可穿戴压力传感器用于监测人体的生理和肌肉运动迹象

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摘要

Self-powered operation, flexibility, excellent mechanical properties, and ultra-high sensitivity are highly desired properties for pressure sensors in human health monitoring and anthropomorphic robotic systems. Piezoelectric pressure sensors, with enhanced electromechanical performance to effectively distinguish multiple mechanical stimuli (including pressing, stretching, bending, and twisting), have attracted interest to precisely acquire the weak signals of the human body. In this work, we prepared a poly(vinylidene fluoride-trifluoroethylene)/ multi-walled carbon nanotube (P(VDF-TrFE)/MWCNT) composite by an electrospinning process and stretched it to achieve alignment of the polymer chains. The composite membrane demonstrated excellent piezoelectricy, favorable mechanical strength, and high sensitivity. The piezoelectric coefficient d33 value was approximately 50 pm/V, the Young’s modulus was ~0.986 GPa, and the sensitivity was ~540 mV/N. The resulting composite membrane was employed as a piezoelectric pressure sensor to monitor small physiological signals including pulse, breath, and small motions of muscle and joints such as swallowing, chewing, and finger and wrist movements. Moderate doping with carbon nanotubes had a positive impact on the formation of the β phase of the piezoelectric device, and the piezoelectric pressure sensor has the potential for application in health care systems and smart wearable devices.
机译:自供电操作,灵活性,出色的机械性能和超高灵敏度是人体健康监控和拟人化机器人系统中压力传感器的极高要求。压电式压力传感器具有增强的机电性能,可以有效地区分多种机械刺激(包括挤压,拉伸,弯曲和扭曲),因此人们开始关注精确捕获人体的微弱信号。在这项工作中,我们通过电纺丝工艺制备了聚偏二氟乙烯-三氟乙烯/多壁碳纳米管(P(VDF-TrFE)/ MWCNT)复合材料,并将其拉伸以实现聚合物链的排列。该复合膜表现出优异的压电性,良好的机械强度和高灵敏度。压电系数d33值约为50 pm / V,杨氏模量约为0.986 GPa,灵敏度约为540 mV / N。所得的复合膜被用作压电压力传感器,以监测小的生理信号,包括脉搏,呼吸以及肌肉和关节的微小运动,例如吞咽,咀嚼以及手指和腕部的运动。碳纳米管的适度掺杂对压电设备的β相形成有积极影响,并且压电压力传感器具有在医疗保健系统和智能可穿戴设备中应用的潜力。

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