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An enhanced low-frequency vibration ZnO nanorod-based tuning fork piezoelectric nanogenerator

机译:一个增强的低频振动氧化锌nanorod-based音叉压电

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摘要

In this paper, a piezoelectric nanogenerator (PENG) based on a tuning fork-shaped cantilever was designed and fabricated, aiming at harvesting low frequency vibration energy in the environment. in the PENG, a tuning fork-shaped elastic beam combined with ZnO nanorods (NRs), instead of conventional rectangular cantilever beams, was adopted to extract vibration energy. Benefiting from the high flexibility and the controllable shape of the substrate, this PENG was extremely sensitive to vibration and can harvest weak vibration energy at a low frequency. Moreover, a series of simulation models were established to compare the performance of the PENG with that of different shapes. On this basis, the experimental results further verify that this designed energy harvester could operate at a low frequency which was about 13 Hz. The peak output voltage and current could respectively reach about 160 mV and 11 nA, and a maximum instantaneous peak power of 0.92 mu W cm(-3) across a matched load of 9 M Omega was obtained. Evidently, this newly designed PENG could harvest vibration energy at a lower frequency, which will contribute to broaden the application range of the PENG in energy harvesting and self-powered systems.
机译:摘要压电王中林教授(彭)基于优化叉形悬臂设计并制作,针对收获低频振动能量环境。弹性梁结合氧化锌纳米棒(NRs),而不是传统的矩形悬臂梁,采用提取振动能量。受益于高灵活性和可控形状的衬底,这彭对振动非常敏感,可以吗收获弱低频振动能量。此外,一系列的仿真模型建立了比较的性能彭与不同的形状。基础上,实验结果进一步验证这个设计能量收割机可以操作在低频率约13赫兹。输出电压和电流峰值分别达到约160 mV和11 nA最大瞬时峰值功率为0.92μW9厘米(3)匹配负载Mω获得的。在较低的振动能量吗频率,这将有助于拓宽应用范围彭的能量收获和自供电的系统。

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