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一种基于低频机械晃动的多功能独立式液-固摩擦纳米发电机

A Multifunction Freestanding Liquid-Solid Triboelectric Nanogenerator Based on Low-Frequency Mechanical Sloshing.

作者信息

Huang Tao, Hao Xinyu, Li Ming, He Bingxian, Sun Wei, Zhang Kaiyou, Liao Lei, Pan Yating, Huang Jing, Qin Aimiao

机构信息

Key Lab New Processing Technology for Nonferrous Metals & Materials Ministry of Education, College of Matertials Science and Engineering, Guilin University of Technology, Guilin541004, Guangxi, China.

College of Environmental Science and Engineering, Guilin University of Technology, Guilin541004, Guangxi, China.

出版信息

ACS Appl Mater Interfaces. 2022 Dec 14;14(49):54716-54724. doi: 10.1021/acsami.2c16271. Epub 2022 Dec 1.

Abstract

A simple rectangular-structured freestanding liquid-solid triboelectric nanogenerator (LS-TENG) was fabricated, which used fluorinated ethylene propylene (FEP) films and deionized water (DI) as friction materials. The LS-TENG can effectively convert mechanical energy into electrical energy under the extremely low-frequency shaking of 2 Hz and shows greatly reliable stability. The influence of liquid volume and units on the output performance of the LS-TENG was studied, and the mechanism of the triboelectric electrification process of the LS-TENG was analyzed by COMSOL Multiphysics software. The results show that friction materials, liquid types, and number of units have a great effect on the output performance of the LS-TENG. Under the optimized conditions, the designed array LS-TENG shows high output performance with the open-circuit voltage, short-circuit current, and transferred charge of 120 V, 3.9 μA, and 133 nC, respectively. The LS-TENG can be applied in capacitive storage, AC power, signal acquisition, and self-powered sensor. The multifunctional LS-TENG provides a potentially practical route for harvesting low-frequency mechanical energy in natural environments and enabling multifunctional applications.

摘要

制备了一种简单的矩形结构独立式液-固摩擦电纳米发电机(LS-TENG),其使用氟化乙丙烯(FEP)薄膜和去离子水(DI)作为摩擦材料。该LS-TENG能够在2 Hz的极低频振动下有效地将机械能转化为电能,并表现出高度可靠的稳定性。研究了液体体积和单元数量对LS-TENG输出性能的影响,并通过COMSOL Multiphysics软件分析了LS-TENG的摩擦起电过程机理。结果表明,摩擦材料、液体类型和单元数量对LS-TENG的输出性能有很大影响。在优化条件下,所设计的阵列式LS-TENG表现出高输出性能,开路电压、短路电流和转移电荷分别为120 V、3.9 μA和133 nC。该LS-TENG可应用于电容存储、交流电源、信号采集和自供电传感器。这种多功能LS-TENG为在自然环境中收集低频机械能并实现多功能应用提供了一条潜在的实用途径。

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