Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper

This work presents a nanocomposite-based humidity sensor based on zinc oxide nanostructured powder (ZNP) nanoparticles that achieves a maximum enhancement in the humidity sensing performance at room temperature due to the introduction of different amounts of reduced graphene oxide (rGO) loading from...

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Main Authors: Mamat, Mohamad Hafiz, A Subki, A Shamsul Rahimi, Musa, Mohamed Zahidi, Abdullah, Mohd Hanapiah, Shameem Banu, Itreesh Basha, N. Vasimalai, Ahmad, Mohd Khairul, Nayan, Nafarizal, Abu Bakar, Suriani, Azmi, Mohamed, M. Danang, Birowosuto, Mahmood, Mohamad Rusop
Format: Article
Language:English
Published: Elsevier Ltd 2022
Online Access:http://eprints.utem.edu.my/id/eprint/27504/2/0234802052024102138793.PDF
http://eprints.utem.edu.my/id/eprint/27504/
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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 This work presents a nanocomposite-based humidity sensor based on zinc oxide nanostructured powder (ZNP) nanoparticles that achieves a maximum enhancement in the humidity sensing performance at room temperature due to the introduction of different amounts of reduced graphene oxide (rGO) loading from 0.5 wt% to 2.0 wt%. The rGO/ZNP (rZNP) nanocomposite-based humidity sensor was fabricated by using cellulose filter paper as a substrate and clear paper glue as a binder through a facile brush printing method. FESEM, EDS, XRD, HRTEM, XPS, and Raman spectroscopy were employed to investigate the properties of the ZNP and rZNP nanocomposites. The presence of an rZNP nanocomposite with quasi-spherical ZNP nanoparticles that are securely attached and anchored with rGO sheets was confirmed through HRTEM micrographs. Raman spectroscopy analyses confirm and validate the formation of hybrid nanostructures with the presence of distinctive bands related to ZNP and rGO. The presence of oxygen vacancy defects and oxygen-related chemical bonds on the surface of the rZNP nanocomposite, which yields enhanced sensor performance, is revealed by XPS analysis. The rZNP nanocomposite-based humidity sensor with 1.0 wt% rGO loading (rZNP-1.0) had a maximum sensing response of 99.42% and exhibited the highest sensitivity towards humidity changes (172 or 29.2 MΩ/%RH), which was substantially better than the other tested samples.
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author Mamat, Mohamad Hafiz
A Subki, A Shamsul Rahimi
Musa, Mohamed Zahidi
Abdullah, Mohd Hanapiah
Shameem Banu, Itreesh Basha
N. Vasimalai
Ahmad, Mohd Khairul
Nayan, Nafarizal
Abu Bakar, Suriani
Azmi, Mohamed
M. Danang, Birowosuto
Mahmood, Mohamad Rusop
spellingShingle Mamat, Mohamad Hafiz
A Subki, A Shamsul Rahimi
Musa, Mohamed Zahidi
Abdullah, Mohd Hanapiah
Shameem Banu, Itreesh Basha
N. Vasimalai
Ahmad, Mohd Khairul
Nayan, Nafarizal
Abu Bakar, Suriani
Azmi, Mohamed
M. Danang, Birowosuto
Mahmood, Mohamad Rusop
Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
author_facet Mamat, Mohamad Hafiz
A Subki, A Shamsul Rahimi
Musa, Mohamed Zahidi
Abdullah, Mohd Hanapiah
Shameem Banu, Itreesh Basha
N. Vasimalai
Ahmad, Mohd Khairul
Nayan, Nafarizal
Abu Bakar, Suriani
Azmi, Mohamed
M. Danang, Birowosuto
Mahmood, Mohamad Rusop
author_sort Mamat, Mohamad Hafiz
title Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
title_short Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
title_full Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
title_fullStr Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
title_full_unstemmed Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
title_sort effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper
publisher Elsevier Ltd
publishDate 2022
url http://eprints.utem.edu.my/id/eprint/27504/2/0234802052024102138793.PDF
http://eprints.utem.edu.my/id/eprint/27504/
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spelling my.utem.eprints.275042024-07-25T11:31:49Z http://eprints.utem.edu.my/id/eprint/27504/ Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper Mamat, Mohamad Hafiz A Subki, A Shamsul Rahimi Musa, Mohamed Zahidi Abdullah, Mohd Hanapiah Shameem Banu, Itreesh Basha N. Vasimalai Ahmad, Mohd Khairul Nayan, Nafarizal Abu Bakar, Suriani Azmi, Mohamed M. Danang, Birowosuto Mahmood, Mohamad Rusop This work presents a nanocomposite-based humidity sensor based on zinc oxide nanostructured powder (ZNP) nanoparticles that achieves a maximum enhancement in the humidity sensing performance at room temperature due to the introduction of different amounts of reduced graphene oxide (rGO) loading from 0.5 wt% to 2.0 wt%. The rGO/ZNP (rZNP) nanocomposite-based humidity sensor was fabricated by using cellulose filter paper as a substrate and clear paper glue as a binder through a facile brush printing method. FESEM, EDS, XRD, HRTEM, XPS, and Raman spectroscopy were employed to investigate the properties of the ZNP and rZNP nanocomposites. The presence of an rZNP nanocomposite with quasi-spherical ZNP nanoparticles that are securely attached and anchored with rGO sheets was confirmed through HRTEM micrographs. Raman spectroscopy analyses confirm and validate the formation of hybrid nanostructures with the presence of distinctive bands related to ZNP and rGO. The presence of oxygen vacancy defects and oxygen-related chemical bonds on the surface of the rZNP nanocomposite, which yields enhanced sensor performance, is revealed by XPS analysis. The rZNP nanocomposite-based humidity sensor with 1.0 wt% rGO loading (rZNP-1.0) had a maximum sensing response of 99.42% and exhibited the highest sensitivity towards humidity changes (172 or 29.2 MΩ/%RH), which was substantially better than the other tested samples. Elsevier Ltd 2022-08 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27504/2/0234802052024102138793.PDF Mamat, Mohamad Hafiz and A Subki, A Shamsul Rahimi and Musa, Mohamed Zahidi and Abdullah, Mohd Hanapiah and Shameem Banu, Itreesh Basha and N. Vasimalai and Ahmad, Mohd Khairul and Nayan, Nafarizal and Abu Bakar, Suriani and Azmi, Mohamed and M. Danang, Birowosuto and Mahmood, Mohamad Rusop (2022) Effects of varying the amount of reduced graphene oxide loading on the humidity sensing performance of zinc oxide/reduced graphene oxide nanocomposites on cellulose filter paper. Journal of Alloys and Compounds, 926. pp. 1-21. ISSN 0925-8388 https://pdf.sciencedirectassets.com/271609/1-s2.0-S0925838822X00273/1-s2.0-S092583882203119X/main.pdf?X-Amz-Security-Token=IQoJb3JpZ2luX2VjEK7%2F%2F%2F%2F%2F%2F%2F%2F%2F%2FwEaCXVzLWVhc3QtMSJGMEQCID7Ln0Ucf0v8vCrRbzVT5f21YUJJ2w7cEKTgesGLEqoMAiBcowokJCof%2BYkXiG8PL5bRI7MSiQmAJFzRjjFUYh0kuyqzBQhXEAUaDDA1OTAwMzU0Njg2NSIMhotzuUeOhQrsiKu3KpAFV6Mof7Omq5kICVEqdX9zede88bVy7TBJo%2Bj8E9Ari0oXm38cEuZn0cfyBwr1fu2RJOSLcybPEZZipfTuRU88AhEwKgUOgqmYXgWLZKEMnZH9elj2IVSolNlXKb6xWvOwvnZQ4%2F4BVNjpm4Gbp5zCapnKNEIi%2BYXdWHO1DAUKtp0FlN4c%2BLbffksfVs2FRJOjWcugVP5yYxVGy%2Ba%2FiyvQ5zS2Yu3C9gcDOsDxdezF9V8kmK95r0qdu33Y1gtG1n6mPNHUjyZrg6HItR5P%2BrsfBkpCt060vrW9uEcmFWkdZP15PtXwEvo%2FT%2FzGdGeGSRNsJ3cm1OWAzkKxbeng93Lm9QGqg%2FtuUIXUpADqzn8nKccAZGSn8OmIoEZVCuzyAUaUJWPh4Xt2HhjYDIl1YR4TjSxg21FbXa8Lk9y5cvZamvVJVcrCaTL3Y87JJJgi1Z5gWSBlirkOtfLAoWrvZ4KnLbq0Y5%2FqyDawMA9eCd8Zqu4i23ifLtYep87k2Xjueu%2BCQ23dDiAyGSFIf40hwowP8gasa%2BGJlDRgXrLWzPqpJ5uF6xZF0n%2FhvEqDvSKVqX327iZrFCgewE5wc0I7%2BCMzZmoD6thRmInBzNMtD7htgToqN1wSqHTFYJam31dfp3Ca7IL6OUawm8P%2BjYWYiDK3ZF54mnGMqzfTiboRotcR0DPMR028BWEBWq1SMDruGr2ZnLZJCvfj1pjjN8ima0nanC2Iq%2BdURIoNuez01QywwqQTYwl0sgPi0uSd%2BUiWM7KY%2F7MO57F%2Bmfn3j%2FDWM0z1DCMkFTRVV2%2Fzik4roULzEW3ESPmU1Ld4BmhELht%2FzO6bmOEpVfz2RMkS0YvDIejscMPQQL2UZJmM7DlL6og%2BbO4wyKbUswY6sgEXfEIi5X9p1%2FI0Oiu0RNQjF%2BaDC%2BcGaoTSNmEIJLPRGeGopg4VJJm1qWr%2BU2N4a5vlkDzjry5rAOxrtdGZPs2kr61abC1ONTKz9PkjZu76vCIQNDVmjY0h%2Fb6y0Z7adjjedDyqRkDD7hY7ziEPfhNU2eQYy9V0OD5TALmENBxDvj%2B1magJoK93EJXpbhCANJuKAVe1Zalr36hBRvzqyGVpxLWZC0CSxYbezE7boLYXbVwB&X-Amz-Algorithm=AWS4-HMAC-SHA256&X-Amz-Date=20240621T055633Z&X-Amz-SignedHeaders=host&X-Amz-Expires=300&X-Amz-Credential=ASIAQ3PHCVTYYR45KMFS%2F20240621%2Fus-east-1%2Fs3%2Faws4_request&X-Amz-Signature=5c7997ee389a67c2e806246efcff0842b5df7c3396fd19a09de94645f46c4322&hash=60793c3b9a94f7a186d85a36588d3709e99785605aeba71944c4f1a2f7fb2bb5&host=68042c943591013ac2b2430a89b270f6af2c76d8dfd086a07176afe7c76c2c61&pii=S092583882203119X&tid=spdf-c615bbfd-e0fa-47bc-b0f4-4ddcfc565e60&sid=a5dfd146808ea443c66a6a69f3eb96dd2345gxrqb&type=client&tsoh=d3d3LnNjaWVuY2VkaXJlY3QuY29t&ua=031c575f595f0c545c&rr=8971c18c08ef13e0&cc=my 10.1016/j.jallcom.2022.166728
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