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Self-Powered pH Sensor Based on a Flexible Organic-Inorganic Hybrid Composite Nanogenerator

机译:基于柔性有机-无机杂化复合纳米发电机的自供电pH传感器

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In this study, we developed an innovative, flexible, organic-inorganic hybrid composite nanogenerator, which was used to drive a self-powered microwire-based pH sensor. The hybrid composite nanogenerator was fabricated using ZnO nanowire and piezoelectric polymer poly(vinylidene fluoride), through a simple, inexpensive solution-casting technique. The fabricated hybrid composite nanogenerator delivered a maximum open-circuit voltage of 6.9 V and a short-circuit current of 0.96 μA, with an output power of 6.624 μW under uniaxial compression. This high-performance, electric poling free composite nanogenerator opens up the possibility of industrial-scale fabrication. The hybrid nanogenerator demonstrated its ability to drive five green LEDs simultaneously, without using an energy-storage device. Additionally, we constructed a self-powered pH sensor, using a ZnO microwire powered with our hybrid nanogenerator. The output voltage varied according to changes in the pH level. This study demonstrates the feasibility of using a hybrid nanogenerator as a self-powered device that can be extended for use as a biosensor for environmental monitoring and/or as a smart, wearable, vibration sensor in future applications.
机译:在这项研究中,我们开发了一种创新的,灵活的有机-无机杂化复合纳米发电机,用于驱动自供电的基于微线的pH传感器。通过简单,廉价的溶液浇铸技术,使用ZnO纳米线和压电聚合物聚偏二氟乙烯制造了混合型复合纳米发电机。所制造的混合型复合纳米发电机在单轴压缩下的最大开路电压为6.9 V,短路电流为0.96μA,输出功率为6.624μW。这种高性能,无电极化的复合纳米发电机开辟了工业规模制造的可能性。混合纳米发电机展示了无需驱动储能装置即可同时驱动五个绿色LED的能力。此外,我们使用混合纳米发电机供电的ZnO微线构造了自供电pH传感器。输出电压根据pH值的变化而变化。这项研究证明了使用混合纳米发电机作为自供电设备的可行性,该设备可以扩展用作环境监测的生物传感器和/或在未来的应用中用作智能,可穿戴的振动传感器。

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