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Highly sensitive, wearable and wireless pressure sensor using free-standing ZnO nanoneedle/PVDF hybrid thin film for heart rate monitoring

机译:使用独立的ZnO纳米针/ PVDF混合薄膜的高灵敏度,可穿戴和无线压力传感器,用于心率监测

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摘要

Highly sensitive, wearable and wireless pressure sensor was successfully fabricated based on the zinc oxide (ZnO) nanoneedle/poly(vinylidene difluoride) (PVDF) hybrid film. The nanoneedle structure of ZnO with large aspect ratio and hexagonal vertical grown pyramid form could lower the elastic modulus of the hybrid film compared to the ZnO nanorod. Due to its high permittivity, low polarization response time and outstanding durability, the hybrid film can be applied for a real-time pressure sensor to monitor the heart rate. Notably, the lowest detectable pressure of the hybrid film was as small as 4 Pa. Furthermore, the reduced graphene oxide (rGO) electrode-based Bluetooth antenna attained high peak gain (2.70 dBi) and radiation efficiency (78.38%), which was applicable to be used as an omnidirectional antenna to transmit wireless signal to the smart phone. Interestingly, the received wireless heart beat signal within a distance of 8 m was more sensitively measured on the radial artery than carotid artery without distortion and time delay, and it had a similar oscillation in comparison with the wire pressure sensor. This approach offers a valuable and promising tool for producing the commercial and continuous wireless pressure sensor for use in routine biomedical research and critical healthcare. (C) 2016 Published by Elsevier Ltd.
机译:基于氧化锌(ZnO)纳米针/聚偏二氟乙烯(PVDF)混合膜成功地制造了高度灵敏,可穿戴且无线的压力传感器。与ZnO纳米棒相比,具有高长径比和六边形垂直生长的金字塔形状的ZnO纳米针结构可以降低杂化膜的弹性模量。由于其高介电常数,低极化响应时间和出色的耐用性,该混合膜可用于实时压力传感器以监测心率。值得注意的是,混合膜的最低可检测压力低至4 Pa。此外,基于氧化石墨烯(rGO)电极的蓝牙天线实现了高峰值增益(2.70 dBi)和辐射效率(78.38%),这是适用的用作全向天线,将无线信号传输到智能手机。有趣的是,在radial动脉上比在颈动脉上更灵敏地测量了在8 m距离内接收到的无线心跳信号,而没有畸变和时间延迟,并且与线压力传感器相比,它具有类似的振荡。这种方法为生产用于常规生物医学研究和关键医疗保健的商业和连续无线压力传感器提供了有价值且有前途的工具。 (C)2016由Elsevier Ltd.出版

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