Optimization of TriboelectricNanogenerator for Small Power Electronics

TriboelectricNanogenerators (TENGs) is a new era energy source to power portable small electronic devices. This paper presents the fabrication of vertical contact separation mode TENGs. Three different TENGs device prototypes are fabricated: (1) Kapton-Aluminium; (2) Teflon-Aluminium and (3) Room Te...

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Main Authors: Mainra Jashan Kumar, Kaur Akshpreet, Sapra Gaurav
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/44/e3sconf_icmed2020_01046.pdf
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spelling doaj-ea788641c16241adb3fae0d69ff6475e2021-04-02T15:51:51ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011840104610.1051/e3sconf/202018401046e3sconf_icmed2020_01046Optimization of TriboelectricNanogenerator for Small Power ElectronicsMainra Jashan Kumar0Kaur Akshpreet1Sapra Gaurav2U.I.E.T, Panjab University, Sector – 25U.I.E.T, Panjab University, Sector – 25U.I.E.T, Panjab University, Sector – 25TriboelectricNanogenerators (TENGs) is a new era energy source to power portable small electronic devices. This paper presents the fabrication of vertical contact separation mode TENGs. Three different TENGs device prototypes are fabricated: (1) Kapton-Aluminium; (2) Teflon-Aluminium and (3) Room Temperature Vulcanizing (RTV)-Aluminium. To optimize the performance of TENGs the effect of various parameters such as thickness of dielectric layer, contact time between two layers and contact separation movement of layers have been observed. Experimental result demonstrates that the output voltage increases initially and then decreases with the increase in thickness of dielectric layer. It is also reported that output voltage of TENGs decreases and increases with the increase in contact time and contact separation movement respectively. In this work, an output voltage obtained from TENGs is suitable to drive applications based on small power electronics.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/44/e3sconf_icmed2020_01046.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Mainra Jashan Kumar
Kaur Akshpreet
Sapra Gaurav
spellingShingle Mainra Jashan Kumar
Kaur Akshpreet
Sapra Gaurav
Optimization of TriboelectricNanogenerator for Small Power Electronics
E3S Web of Conferences
author_facet Mainra Jashan Kumar
Kaur Akshpreet
Sapra Gaurav
author_sort Mainra Jashan Kumar
title Optimization of TriboelectricNanogenerator for Small Power Electronics
title_short Optimization of TriboelectricNanogenerator for Small Power Electronics
title_full Optimization of TriboelectricNanogenerator for Small Power Electronics
title_fullStr Optimization of TriboelectricNanogenerator for Small Power Electronics
title_full_unstemmed Optimization of TriboelectricNanogenerator for Small Power Electronics
title_sort optimization of triboelectricnanogenerator for small power electronics
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description TriboelectricNanogenerators (TENGs) is a new era energy source to power portable small electronic devices. This paper presents the fabrication of vertical contact separation mode TENGs. Three different TENGs device prototypes are fabricated: (1) Kapton-Aluminium; (2) Teflon-Aluminium and (3) Room Temperature Vulcanizing (RTV)-Aluminium. To optimize the performance of TENGs the effect of various parameters such as thickness of dielectric layer, contact time between two layers and contact separation movement of layers have been observed. Experimental result demonstrates that the output voltage increases initially and then decreases with the increase in thickness of dielectric layer. It is also reported that output voltage of TENGs decreases and increases with the increase in contact time and contact separation movement respectively. In this work, an output voltage obtained from TENGs is suitable to drive applications based on small power electronics.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/44/e3sconf_icmed2020_01046.pdf
work_keys_str_mv AT mainrajashankumar optimizationoftriboelectricnanogeneratorforsmallpowerelectronics
AT kaurakshpreet optimizationoftriboelectricnanogeneratorforsmallpowerelectronics
AT sapragaurav optimizationoftriboelectricnanogeneratorforsmallpowerelectronics
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