Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications
The triboelectric nanogenerator (TENG) collects mechanical energy from its surroundings and converts it to electrical signals that can be used in sustainable energy harvesting technologies to help maintain the social ecosystem. However, TENG operation with pure triboelectric material may not be suff...
Published in: | Journal of Advanced Research in Applied Mechanics |
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Language: | English |
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Semarak Ilmu Publishing
2025
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2-s2.0-85209144607 Kamaruzaman D.; Mamat M.H.; Aziz A.A.; Subki A.S.R.A.; Ariffin N.I.K.; Mustakim N.S.M.; Parimon N.; Vasimalai N.; Abdullah M.H.; Sin N.D.M.; Ahmad M.K.; Bakar S.A.; Krishnan S.P. Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications 2025 Journal of Advanced Research in Applied Mechanics 126 1 10.37934/aram.126.1.165177 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85209144607&doi=10.37934%2faram.126.1.165177&partnerID=40&md5=ab5bd91eb70a8bed4b05757b60249548 The triboelectric nanogenerator (TENG) collects mechanical energy from its surroundings and converts it to electrical signals that can be used in sustainable energy harvesting technologies to help maintain the social ecosystem. However, TENG operation with pure triboelectric material may not be sufficient to power a small electronic system without modification. The optimal material capable of producing significant electrical energy with flexible structures remains a major barrier to practical application. In this study, tin-doped zinc oxide (Sn:ZnO) and polyvinyl alcohol (PVA) composite thin films were prepared using a simple solution immersion technique at various Sn atomic percentage (at.%) concentrations for use in TENG devices. The crystalline quality of a composite thin film made of Sn:ZnO and PVA was identified using x-ray diffraction. The microstructure changes of the composite thin film were found to be influenced by Sn doping, as studied using optical microscopy. The TENG with 2.5 at.% Sn:ZnO/PVA composite thin film and Kapton film achieved the highest peak voltage of 8.5 V in open circuit and 90 µW output power at 1 MΩ. The produced electrical output was then used to store energy in capacitors. According to its TENG properties, the Sn:ZnO/PVA composite thin film-based TENG has the potential to be used in low power electronic devices. © 2025, Semarak Ilmu Publishing. All rights reserved. Semarak Ilmu Publishing 22897895 English Article All Open Access; Gold Open Access |
author |
Kamaruzaman D.; Mamat M.H.; Aziz A.A.; Subki A.S.R.A.; Ariffin N.I.K.; Mustakim N.S.M.; Parimon N.; Vasimalai N.; Abdullah M.H.; Sin N.D.M.; Ahmad M.K.; Bakar S.A.; Krishnan S.P. |
spellingShingle |
Kamaruzaman D.; Mamat M.H.; Aziz A.A.; Subki A.S.R.A.; Ariffin N.I.K.; Mustakim N.S.M.; Parimon N.; Vasimalai N.; Abdullah M.H.; Sin N.D.M.; Ahmad M.K.; Bakar S.A.; Krishnan S.P. Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
author_facet |
Kamaruzaman D.; Mamat M.H.; Aziz A.A.; Subki A.S.R.A.; Ariffin N.I.K.; Mustakim N.S.M.; Parimon N.; Vasimalai N.; Abdullah M.H.; Sin N.D.M.; Ahmad M.K.; Bakar S.A.; Krishnan S.P. |
author_sort |
Kamaruzaman D.; Mamat M.H.; Aziz A.A.; Subki A.S.R.A.; Ariffin N.I.K.; Mustakim N.S.M.; Parimon N.; Vasimalai N.; Abdullah M.H.; Sin N.D.M.; Ahmad M.K.; Bakar S.A.; Krishnan S.P. |
title |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
title_short |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
title_full |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
title_fullStr |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
title_full_unstemmed |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
title_sort |
Triboelectric Nanogenerator Based on Tin Doped Zinc Oxide and Polyvinyl Alcohol Composite Thin Film for Energy Harvesting Applications |
publishDate |
2025 |
container_title |
Journal of Advanced Research in Applied Mechanics |
container_volume |
126 |
container_issue |
1 |
doi_str_mv |
10.37934/aram.126.1.165177 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85209144607&doi=10.37934%2faram.126.1.165177&partnerID=40&md5=ab5bd91eb70a8bed4b05757b60249548 |
description |
The triboelectric nanogenerator (TENG) collects mechanical energy from its surroundings and converts it to electrical signals that can be used in sustainable energy harvesting technologies to help maintain the social ecosystem. However, TENG operation with pure triboelectric material may not be sufficient to power a small electronic system without modification. The optimal material capable of producing significant electrical energy with flexible structures remains a major barrier to practical application. In this study, tin-doped zinc oxide (Sn:ZnO) and polyvinyl alcohol (PVA) composite thin films were prepared using a simple solution immersion technique at various Sn atomic percentage (at.%) concentrations for use in TENG devices. The crystalline quality of a composite thin film made of Sn:ZnO and PVA was identified using x-ray diffraction. The microstructure changes of the composite thin film were found to be influenced by Sn doping, as studied using optical microscopy. The TENG with 2.5 at.% Sn:ZnO/PVA composite thin film and Kapton film achieved the highest peak voltage of 8.5 V in open circuit and 90 µW output power at 1 MΩ. The produced electrical output was then used to store energy in capacitors. According to its TENG properties, the Sn:ZnO/PVA composite thin film-based TENG has the potential to be used in low power electronic devices. © 2025, Semarak Ilmu Publishing. All rights reserved. |
publisher |
Semarak Ilmu Publishing |
issn |
22897895 |
language |
English |
format |
Article |
accesstype |
All Open Access; Gold Open Access |
record_format |
scopus |
collection |
Scopus |
_version_ |
1820775427625451520 |