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基于电荷泵浦和电压倍增的一体化高输出旋转静电纳米发电机

All-in-One High Output Rotary Electrostatic Nanogenerators Based on Charge Pumping and Voltage Multiplying.

作者信息

Ding Rong, Cao Zeyuan, Wu Zibo, Xing Haitong, Ye Xiongying

机构信息

State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, China.

出版信息

ACS Nano. 2021 Oct 26;15(10):16861-16869. doi: 10.1021/acsnano.1c07480. Epub 2021 Oct 1.

Abstract

Electrostatic generators as a kind of effective energy harvesters have attracted intensive attention. However, the output of the generators is highly dependent on the charge density. Here, we demonstrate an all-in-one rotary electrostatic nanogenerator based on the charge pumping and voltage multiplying strategy (CV-ESG), which achieves high output power in SF atmosphere. CV-ESG integrates a pumping electret generator, a main generator, and a voltage multiplying and stabilization circuit on a pair of rotator and stator. We analyze the breakdown effect and its influence on the insulating layer covered on the electrodes through experiments. The breakdown voltage is high in SF atmosphere, and the maximum average power of CV-ESG in SF is 37.29 mW at 750 rpm, which is 3.29 times that in air. There is no surface friction in CV-ESG, which avoids abrasion and reduces friction damping. And the pumping generator is integrated with the main generator, making CV-ESG compact and easy to assemble. This work provides the design strategy for a high-power rotary electrostatic generator with good performance.

摘要

静电发电机作为一种有效的能量收集器,已引起广泛关注。然而,发电机的输出高度依赖于电荷密度。在此,我们展示了一种基于电荷泵浦和电压倍增策略的一体化旋转静电纳米发电机(CV-ESG),它在SF气氛中实现了高输出功率。CV-ESG在一对转子和定子上集成了一个泵浦驻极体发电机、一个主发电机以及一个电压倍增和稳定电路。我们通过实验分析了击穿效应及其对覆盖在电极上的绝缘层的影响。在SF气氛中击穿电压较高,CV-ESG在SF中750转/分钟时的最大平均功率为37.29毫瓦,是在空气中的3.29倍。CV-ESG中不存在表面摩擦,避免了磨损并降低了摩擦阻尼。并且泵浦发电机与主发电机集成在一起,使得CV-ESG紧凑且易于组装。这项工作为高性能的大功率旋转静电发电机提供了设计策略。

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