Zhu Minmin, Chng Soon Siang, Cai Weifan, Liu Chongyang, Du Zehui
Temasek Laboratories, Nanyang Technological University Research Techno Plaza, 50 Nanyang Drive 637553 Singapore
NOVITAS, School of Electrical and Electronic Engineering, Nanyang Technological University 50 Nanyang Avenue 639798 Singapore.
RSC Adv. 2020 Jun 8;10(37):21887-21894. doi: 10.1039/d0ra03293j.
Miniaturized, wearable and self-powered sensors are crucial for applications in artificial intelligence, robotics, healthcare, and communication devices. In particular, piezoelectric polymer-based sensing systems have the advantages of light weight, large piezoelectricity and mechanical flexibility, offering great opportunities in flexible and stretchable electronic devices. Herein, free-standing large-size nanofiber (NF) membranes have been fabricated by an electrospinning technique. Our results show that the as-synthesized P(VDF-TrFE) NFs are pure β-phase and exhibit excellent mechanical and thermal properties. Besides having high sensitivity and operational stability, the fibrous sensor can generate remarkable electrical signals from applied pressure, with an output voltage of 18.1 V, output current of 0.177 μA, and power density of 22.9 μW cm. Moreover, such sensors also produce significant electrical performance of up to a few volts under human mechanical stress, thereby allowing for the monitoring of biomechanical movement of the human foot, elbow, and finger. Our study sheds light onto the use of piezoelectric polymers for flexible self-powered sensing electronics and wearable devices.
小型化、可穿戴和自供电传感器对于人工智能、机器人技术、医疗保健及通信设备等应用至关重要。特别是,基于压电聚合物的传感系统具有重量轻、压电性大及机械柔韧性好等优点,为柔性和可拉伸电子设备提供了巨大机遇。在此,通过静电纺丝技术制备了独立的大尺寸纳米纤维(NF)膜。我们的结果表明,合成的聚(偏二氟乙烯-三氟乙烯)纳米纤维为纯β相,具有优异的机械和热性能。除了具有高灵敏度和操作稳定性外,纤维传感器能在施加压力时产生显著的电信号,输出电压为18.1 V,输出电流为0.177 μA,功率密度为22.9 μW/cm。此外,这种传感器在人体机械应力下也能产生高达几伏的显著电性能,从而可用于监测人脚、肘部和手指的生物力学运动。我们的研究为压电聚合物在柔性自供电传感电子学和可穿戴设备中的应用提供了启示。