Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator

Most global problems are being solved by using sustainable energy harvesting technologies to retain the social ecosystem in great condition. The triboelectric nanogenerator (TENG) which is a renewable energy harvesting device, collects the waste mechanical energy from its surroundings and performs t...

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Main Authors: Mamat, Mohamad Hafiz, Kamaruzaman, Dayana, A Subki, A Shamsul Rahimi, Kamal Ariffin, Nurul Izzati, Megat Zulkifli, Megat Danial Aizat, Mohamed Mustakim, Nurul Syafiqah, Parimon, Norfarariyanti, Yaakob, Muhammad Kamil, Malek, Mohd Firdaus, Vasimalai, Nagamalai, Abdullah, Mohd Hanapiah, Md Sin, Nor Diyana, Abu Bakar, Suriani, Ahmad, Mohd Khairul
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2023
Online Access:http://eprints.utem.edu.my/id/eprint/27500/2/0234802052024105222797.PDF
http://eprints.utem.edu.my/id/eprint/27500/
https://semarakilmu.com.my/journals/index.php/applied_sciences_eng_tech/article/view/3255/2964
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spelling my.utem.eprints.275002024-07-25T11:31:07Z http://eprints.utem.edu.my/id/eprint/27500/ Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator Mamat, Mohamad Hafiz Kamaruzaman, Dayana A Subki, A Shamsul Rahimi Kamal Ariffin, Nurul Izzati Megat Zulkifli, Megat Danial Aizat Mohamed Mustakim, Nurul Syafiqah Parimon, Norfarariyanti Yaakob, Muhammad Kamil Malek, Mohd Firdaus Vasimalai, Nagamalai Abdullah, Mohd Hanapiah Md Sin, Nor Diyana Abu Bakar, Suriani Ahmad, Mohd Khairul Most global problems are being solved by using sustainable energy harvesting technologies to retain the social ecosystem in great condition. The triboelectric nanogenerator (TENG) which is a renewable energy harvesting device, collects the waste mechanical energy from its surroundings and performs the electric signal conversion. TENG have garnered increased attention in recent years by offering prospective use in energy harvesting technology. Particularly, there is a need for flexible energy conversion that serves as a power supply for portable electronic equipment. In this study, ZnO nanosheet thin film prepared on the flexible conductive aluminium foil through a low temperature immersion technique was used to generate electrical energy. The effect of heat treatment on ZnO nanosheet thin film was also investigated on the surface morphology, structural properties and nanogerator performance. The high density of interconnected ZnO nanosheet were observed before and after heat treatment as confirmed by FESEM studies. The analysis using XRD confirmed that ZnO nanosheet thin film was successfully deposited on the aluminium foil. Additionally, the ZnO nanosheet thin films improved significantly with heat treatment, enhancing their crystalline quality. The TENG was successfully constructed in contact and separation mode using Kapton tape on top and ZnO nanosheet thin film on the bottom to generate electricity by a force of hand pressing. The output electrical voltage of the device doubled from around 2 V to 4 V after underwent the heat treatment. This study provides an essential insight into fabrication of TENG using the ZnO nanosheet thin film through a clean and effective method for nanogenerator applications. Semarak Ilmu Publishing 2023-12 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27500/2/0234802052024105222797.PDF Mamat, Mohamad Hafiz and Kamaruzaman, Dayana and A Subki, A Shamsul Rahimi and Kamal Ariffin, Nurul Izzati and Megat Zulkifli, Megat Danial Aizat and Mohamed Mustakim, Nurul Syafiqah and Parimon, Norfarariyanti and Yaakob, Muhammad Kamil and Malek, Mohd Firdaus and Vasimalai, Nagamalai and Abdullah, Mohd Hanapiah and Md Sin, Nor Diyana and Abu Bakar, Suriani and Ahmad, Mohd Khairul (2023) Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator. Journal of Advanced Research in Applied Sciences and Engineering Technology, 34 (2). pp. 88-98. ISSN 2462-1943 https://semarakilmu.com.my/journals/index.php/applied_sciences_eng_tech/article/view/3255/2964 10.37934/araset.34.2.8898
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
description Most global problems are being solved by using sustainable energy harvesting technologies to retain the social ecosystem in great condition. The triboelectric nanogenerator (TENG) which is a renewable energy harvesting device, collects the waste mechanical energy from its surroundings and performs the electric signal conversion. TENG have garnered increased attention in recent years by offering prospective use in energy harvesting technology. Particularly, there is a need for flexible energy conversion that serves as a power supply for portable electronic equipment. In this study, ZnO nanosheet thin film prepared on the flexible conductive aluminium foil through a low temperature immersion technique was used to generate electrical energy. The effect of heat treatment on ZnO nanosheet thin film was also investigated on the surface morphology, structural properties and nanogerator performance. The high density of interconnected ZnO nanosheet were observed before and after heat treatment as confirmed by FESEM studies. The analysis using XRD confirmed that ZnO nanosheet thin film was successfully deposited on the aluminium foil. Additionally, the ZnO nanosheet thin films improved significantly with heat treatment, enhancing their crystalline quality. The TENG was successfully constructed in contact and separation mode using Kapton tape on top and ZnO nanosheet thin film on the bottom to generate electricity by a force of hand pressing. The output electrical voltage of the device doubled from around 2 V to 4 V after underwent the heat treatment. This study provides an essential insight into fabrication of TENG using the ZnO nanosheet thin film through a clean and effective method for nanogenerator applications.
format Article
author Mamat, Mohamad Hafiz
Kamaruzaman, Dayana
A Subki, A Shamsul Rahimi
Kamal Ariffin, Nurul Izzati
Megat Zulkifli, Megat Danial Aizat
Mohamed Mustakim, Nurul Syafiqah
Parimon, Norfarariyanti
Yaakob, Muhammad Kamil
Malek, Mohd Firdaus
Vasimalai, Nagamalai
Abdullah, Mohd Hanapiah
Md Sin, Nor Diyana
Abu Bakar, Suriani
Ahmad, Mohd Khairul
spellingShingle Mamat, Mohamad Hafiz
Kamaruzaman, Dayana
A Subki, A Shamsul Rahimi
Kamal Ariffin, Nurul Izzati
Megat Zulkifli, Megat Danial Aizat
Mohamed Mustakim, Nurul Syafiqah
Parimon, Norfarariyanti
Yaakob, Muhammad Kamil
Malek, Mohd Firdaus
Vasimalai, Nagamalai
Abdullah, Mohd Hanapiah
Md Sin, Nor Diyana
Abu Bakar, Suriani
Ahmad, Mohd Khairul
Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
author_facet Mamat, Mohamad Hafiz
Kamaruzaman, Dayana
A Subki, A Shamsul Rahimi
Kamal Ariffin, Nurul Izzati
Megat Zulkifli, Megat Danial Aizat
Mohamed Mustakim, Nurul Syafiqah
Parimon, Norfarariyanti
Yaakob, Muhammad Kamil
Malek, Mohd Firdaus
Vasimalai, Nagamalai
Abdullah, Mohd Hanapiah
Md Sin, Nor Diyana
Abu Bakar, Suriani
Ahmad, Mohd Khairul
author_sort Mamat, Mohamad Hafiz
title Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
title_short Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
title_full Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
title_fullStr Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
title_full_unstemmed Nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
title_sort nanosheet zinc oxide synthesized by solution-immersion method for triboelectric nanogenerator
publisher Semarak Ilmu Publishing
publishDate 2023
url http://eprints.utem.edu.my/id/eprint/27500/2/0234802052024105222797.PDF
http://eprints.utem.edu.my/id/eprint/27500/
https://semarakilmu.com.my/journals/index.php/applied_sciences_eng_tech/article/view/3255/2964
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score 13.188404