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A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting

Harvesting acoustic energy in the environment and converting it into electricity can provide essential ideas for self-powering the widely distributed sensor devices in the age of the Internet of Things. In this study, we propose a low-cost, easily fabricated and high-performance coniform Helmholtz r...

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Autores principales: Yuan, Haichao, Yu, Hongyong, Liu, Xiangyu, Zhao, Hongfa, Zhang, Yiping, Xi, Ziyue, Zhang, Qiqi, Liu, Ling, Lin, Yejin, Pan, Xinxiang, Xu, Minyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8705617/
https://www.ncbi.nlm.nih.gov/pubmed/34947780
http://dx.doi.org/10.3390/nano11123431
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author Yuan, Haichao
Yu, Hongyong
Liu, Xiangyu
Zhao, Hongfa
Zhang, Yiping
Xi, Ziyue
Zhang, Qiqi
Liu, Ling
Lin, Yejin
Pan, Xinxiang
Xu, Minyi
author_facet Yuan, Haichao
Yu, Hongyong
Liu, Xiangyu
Zhao, Hongfa
Zhang, Yiping
Xi, Ziyue
Zhang, Qiqi
Liu, Ling
Lin, Yejin
Pan, Xinxiang
Xu, Minyi
author_sort Yuan, Haichao
collection PubMed
description Harvesting acoustic energy in the environment and converting it into electricity can provide essential ideas for self-powering the widely distributed sensor devices in the age of the Internet of Things. In this study, we propose a low-cost, easily fabricated and high-performance coniform Helmholtz resonator-based Triboelectric Nanogenerator (CHR-TENG) with the purpose of acoustic energy harvesting. Output performances of the CHR-TENG with varied geometrical sizes were systematically investigated under different acoustic energy conditions. Remarkably, the CHR-TENG could achieve a 58.2% higher power density per unit of sound pressure of acoustic energy harvesting compared with the ever-reported best result. In addition, the reported CHR-TENG was demonstrated by charging a 1000 μF capacitor up to 3 V in 165 s, powering a sensor for continuous temperature and humidity monitoring and lighting up as many as five 0.5 W commercial LED bulbs for acoustic energy harvesting. With a collection features of high output performance, lightweight, wide frequency response band and environmental friendliness, the cleverly designed CHR-TENG represents a practicable acoustic energy harvesting approach for powering sensor devices in the age of the Internet of Things.
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spelling pubmed-87056172021-12-25 A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting Yuan, Haichao Yu, Hongyong Liu, Xiangyu Zhao, Hongfa Zhang, Yiping Xi, Ziyue Zhang, Qiqi Liu, Ling Lin, Yejin Pan, Xinxiang Xu, Minyi Nanomaterials (Basel) Article Harvesting acoustic energy in the environment and converting it into electricity can provide essential ideas for self-powering the widely distributed sensor devices in the age of the Internet of Things. In this study, we propose a low-cost, easily fabricated and high-performance coniform Helmholtz resonator-based Triboelectric Nanogenerator (CHR-TENG) with the purpose of acoustic energy harvesting. Output performances of the CHR-TENG with varied geometrical sizes were systematically investigated under different acoustic energy conditions. Remarkably, the CHR-TENG could achieve a 58.2% higher power density per unit of sound pressure of acoustic energy harvesting compared with the ever-reported best result. In addition, the reported CHR-TENG was demonstrated by charging a 1000 μF capacitor up to 3 V in 165 s, powering a sensor for continuous temperature and humidity monitoring and lighting up as many as five 0.5 W commercial LED bulbs for acoustic energy harvesting. With a collection features of high output performance, lightweight, wide frequency response band and environmental friendliness, the cleverly designed CHR-TENG represents a practicable acoustic energy harvesting approach for powering sensor devices in the age of the Internet of Things. MDPI 2021-12-17 /pmc/articles/PMC8705617/ /pubmed/34947780 http://dx.doi.org/10.3390/nano11123431 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yuan, Haichao
Yu, Hongyong
Liu, Xiangyu
Zhao, Hongfa
Zhang, Yiping
Xi, Ziyue
Zhang, Qiqi
Liu, Ling
Lin, Yejin
Pan, Xinxiang
Xu, Minyi
A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title_full A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title_fullStr A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title_full_unstemmed A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title_short A High-Performance Coniform Helmholtz Resonator-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting
title_sort high-performance coniform helmholtz resonator-based triboelectric nanogenerator for acoustic energy harvesting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8705617/
https://www.ncbi.nlm.nih.gov/pubmed/34947780
http://dx.doi.org/10.3390/nano11123431
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