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首页> 外文期刊>Sensors and Actuators, A. Physical >Flexible piezoelectric pressure sensor based on polydopamine-modified BaTiO3/PVDF composite film for human motion monitoring
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Flexible piezoelectric pressure sensor based on polydopamine-modified BaTiO3/PVDF composite film for human motion monitoring

机译:基于聚二醇改性BATIO3 / PVDF复合膜的柔性压电压力传感器用于人体运动监测

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摘要

Flexible pressure sensors based on piezoelectric materials have been intensively investigated for their wide applications in wearable electronics. However, traditional films based on inorganic/organic composite piezoelectric materials face the bottleneck of defects and cracks or poor dispersion, which hinders the performance of pressure sensors. Herein, polydopamine (PDA) was introduced as a surface modification agent to modify barium titanate (BaTiO3, BTO), which was then blended with poly(vinylidene fluoride) (PVDF) matrix in different ratios to form uniform and homogeneous PDA@BTO/PVDF composites. Afterwards, the flexible piezoelectric pressure sensor was fabricated by a facial solution-casting method. This PDA-modification strategy can improve the dispersion of BTO into PVDF matrix, as well as reduce the interface hole defects and cracks between the two components. As a result, the 17 wt% PDA@BTO/PVDF sensor exhibited a fast response of 61 ms and a remarkable piezoelectric output voltage of 9.3 V, which showed obvious improvement as compared to the pristine PVDF and BTO/PVDF composite counterparts. In addition, as an energy supplier, the sensor could produce a maximum power of 0.122 mu W/cm(2) even with high load resistance of 70 m Omega. This pressure sensor was sensitive to various human motions, showing great potential in the applications of wearable electronics. (C) 2019 Elsevier B.V. All rights reserved.
机译:基于压电材料的柔性压力传感器已经密集地研究了可穿戴电子产品的广泛应用。然而,基于无机/有机复合压电材料的传统薄膜面临缺陷和裂缝或缺陷的瓶颈,阻碍了压力传感器的性能。在此,将多碳胺(PDA)作为表面改性剂引入以改变钛酸钡(BATIO3,BTO),然后用不同比例的聚(偏二氟乙烯)(PVDF)基质混合,形成均匀和均匀的PDA / PVDF复合材料。然后,通过面部溶液铸造方法制造柔性压电压力传感器。该PDA修改策略可以将BTO分散到PVDF矩阵中,以及减少两个部件之间的界面孔缺陷和裂缝。结果,17wt%PDA / PVDF传感器表现出61ms的快速响应和具有9.3V的显着压电输出电压,与原始PVDF和BTO / PVDF复合对应相比显示出明显的改善。另外,作为能量供应商,传感器可以产生0.122μm/ cm(2)的最大功率,即使具有70米ω的高负载电阻。这种压力传感器对各种人类运动敏感,在可穿戴电子设备的应用中表现出很大的潜力。 (c)2019 Elsevier B.v.保留所有权利。

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