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Quantifying energy harvested from contact-mode hybrid nanogenerators with cascaded piezoelectric and triboelectric units

机译:量化从具有压电和摩擦电级联单元的接触式混合纳米发电机收集的能量

摘要

This paper presents an investigation of novel contact-mode hybrid nanogenerators comprising cascaded piezoelectric and triboelectric units. For the first time, a theoretical analysis of the contact-mode hybrid generator is presented to describe the relationships among transfer charges, voltage, current, and average output power in terms of material properties, hybrid generator structural parameters, harvesting, and operational conditions. New hybrid generators with much enhanced piezoelectricity are fabricated via a simple, room-temperature, cost-effective route by using nonwoven fabrics made from electrospun Polyvinyledenedifluoride-trifluoroethylene (PVDF-TrFE)/Ag nanowire nanofibers and Polydimethylsiloxane (PDMS) composites with graphite nanoparticles. The results provide a powerful tool for synthesis and selection of materials, design and optimization of the configuration, and operation of such kind of hybrid generators as well as determination of the value of external capacitor.
机译:本文介绍了一种新型的接触式混合纳米发电机的研究,该发电机包括级联的压电和摩擦电单元。首次对接触式混合动力发电机进行了理论分析,以从材料性能,混合动力发电机结构参数,收割和运行条件等方面描述转移电荷,电压,电流和平均输出功率之间的关系。通过使用电纺聚乙烯基二氟乙烯-三氟乙烯(PVDF-TrFE)/银纳米线纳米纤维和聚二甲基硅氧烷(PDMS)复合材料与石墨纳米粒子制成的非织造布,通过一条简单,在室温下,具有成本效益的途径即可制造出压电性大大提高的新型混合发电机。结果为合成和选择材料,配置的设计和优化,此类混合发电机的运行以及确定外部电容器的值提供了有力的工具。

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