Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant

A small amount of MnO2 dopant was added to ZnO system to see the improvement of the ceramic varistor microstructural and nonlinear electrical properties. The samples were prepared using solid-state reaction method and the microstructure and nonlinear electrical properties of the ZnO-xMnO2 system wer...

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Main Authors: Adnin, Noorfauzana, Zakaria, Azmi, Mohd Ghazali, Mohd Sabri, Wan Abdullah, Wan Rafizah, Hashim, Mansor
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2013
Online Access:http://psasir.upm.edu.my/id/eprint/30093/1/Microstructural%20and%20nonlinear%20electrical%20properties%20of%20ZnO%20ceramics%20with%20small%20amount%20of%20MnO2%20dopant.pdf
http://psasir.upm.edu.my/id/eprint/30093/
http://www.ukm.my/jsm/english_journals/vol42num8_2013/contentsVol42num8_2013.html
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spelling my.upm.eprints.300932019-12-18T01:25:21Z http://psasir.upm.edu.my/id/eprint/30093/ Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant Adnin, Noorfauzana Zakaria, Azmi Mohd Ghazali, Mohd Sabri Wan Abdullah, Wan Rafizah Hashim, Mansor A small amount of MnO2 dopant was added to ZnO system to see the improvement of the ceramic varistor microstructural and nonlinear electrical properties. The samples were prepared using solid-state reaction method and the microstructure and nonlinear electrical properties of the ZnO-xMnO2 system were investigated for × = 0.011 to 0.026 mol%, at three sintering temperatures, 1180°C, 1240°C and 1300°C for 1 and 2 h sintering time. The XRD and EDAX analyses showed that the main phase was ZnO while ZnMnO3 and ZnMnO7 as the secondary phases developed and distributed at the grain boundaries and triple point junction. The SEM observation revealed that prolonged sintering temperature and time improved the microstructure uniformity and strongly influences the nonlinear behavior of the samples. The maximum density and grain size have been observed at 92% of theoretical density and 10.8 μm, respectively and occur at the highest sintering temperature which is 1300°C. The value of nonlinear coefficient α is found to increase with the increase of MnO2 doping level up to 0.016 mol% and drop with further doping level increment for all sintering temperatures and time. Penerbit Universiti Kebangsaan Malaysia 2013 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/30093/1/Microstructural%20and%20nonlinear%20electrical%20properties%20of%20ZnO%20ceramics%20with%20small%20amount%20of%20MnO2%20dopant.pdf Adnin, Noorfauzana and Zakaria, Azmi and Mohd Ghazali, Mohd Sabri and Wan Abdullah, Wan Rafizah and Hashim, Mansor (2013) Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant. Sains Malaysiana, 42 (8). pp. 1139-1144. ISSN 0026-6039 http://www.ukm.my/jsm/english_journals/vol42num8_2013/contentsVol42num8_2013.html
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description A small amount of MnO2 dopant was added to ZnO system to see the improvement of the ceramic varistor microstructural and nonlinear electrical properties. The samples were prepared using solid-state reaction method and the microstructure and nonlinear electrical properties of the ZnO-xMnO2 system were investigated for × = 0.011 to 0.026 mol%, at three sintering temperatures, 1180°C, 1240°C and 1300°C for 1 and 2 h sintering time. The XRD and EDAX analyses showed that the main phase was ZnO while ZnMnO3 and ZnMnO7 as the secondary phases developed and distributed at the grain boundaries and triple point junction. The SEM observation revealed that prolonged sintering temperature and time improved the microstructure uniformity and strongly influences the nonlinear behavior of the samples. The maximum density and grain size have been observed at 92% of theoretical density and 10.8 μm, respectively and occur at the highest sintering temperature which is 1300°C. The value of nonlinear coefficient α is found to increase with the increase of MnO2 doping level up to 0.016 mol% and drop with further doping level increment for all sintering temperatures and time.
format Article
author Adnin, Noorfauzana
Zakaria, Azmi
Mohd Ghazali, Mohd Sabri
Wan Abdullah, Wan Rafizah
Hashim, Mansor
spellingShingle Adnin, Noorfauzana
Zakaria, Azmi
Mohd Ghazali, Mohd Sabri
Wan Abdullah, Wan Rafizah
Hashim, Mansor
Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
author_facet Adnin, Noorfauzana
Zakaria, Azmi
Mohd Ghazali, Mohd Sabri
Wan Abdullah, Wan Rafizah
Hashim, Mansor
author_sort Adnin, Noorfauzana
title Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
title_short Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
title_full Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
title_fullStr Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
title_full_unstemmed Microstructural and nonlinear electrical properties of ZnO ceramics with small amount of MnO2 dopant
title_sort microstructural and nonlinear electrical properties of zno ceramics with small amount of mno2 dopant
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2013
url http://psasir.upm.edu.my/id/eprint/30093/1/Microstructural%20and%20nonlinear%20electrical%20properties%20of%20ZnO%20ceramics%20with%20small%20amount%20of%20MnO2%20dopant.pdf
http://psasir.upm.edu.my/id/eprint/30093/
http://www.ukm.my/jsm/english_journals/vol42num8_2013/contentsVol42num8_2013.html
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