Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode

This research focuses on the radiation tolerance of ZnO and CuGaO2 based semiconductor application for space borne application. In this research, n-ZnO/p-CuGaO2 based semiconductor devices were fabricated and exposed to gamma rays with increasing total ionizing dose (TID) and neutron fluence at diff...

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Main Authors: Gamma Ray and Neutron Radiation effects on the electrical and st, Fuei Pien Chee, Rosfayanti Rasmidi, Afishah Alias, Saafie Salleh, Khairul Anuar Mohd Salleh, Abi Muttaqin Jalal Bayar
Format: Article
Language:English
Published: IOP Science 2020
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Online Access:https://eprints.ums.edu.my/id/eprint/25584/1/Solar%20assisted%20heat%20pump%20system%20for%20high%20quality%20drying%20applications.pdf
https://eprints.ums.edu.my/id/eprint/25584/
https://doi.org/10.1149/2162-8777/ab8f19
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Institution: Universiti Malaysia Sabah
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spelling my.ums.eprints.255842021-03-23T12:06:12Z https://eprints.ums.edu.my/id/eprint/25584/ Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode Gamma Ray and Neutron Radiation effects on the electrical and st Fuei Pien Chee Rosfayanti Rasmidi Afishah Alias Saafie Salleh Khairul Anuar Mohd Salleh Abi Muttaqin Jalal Bayar QC Physics This research focuses on the radiation tolerance of ZnO and CuGaO2 based semiconductor application for space borne application. In this research, n-ZnO/p-CuGaO2 based semiconductor devices were fabricated and exposed to gamma rays with increasing total ionizing dose (TID) and neutron fluence at different flux. Based on the I-V properties, the decrease in the turn-on voltage of the diode is noticeable with increasing radiation dose for both gamma and neutron flux exposure. The maximum turn-on-voltage of the fabricated diode was shown to be 1.5 V. Exposure towards gamma, shows that the turn-on is increased to 4.7 V at 200 kGy. However, the effect of neutron flux at 6.5 × 1015 n cm−2 shows a small significant effect on the turn on voltage of 1.7 V after irradiation. Results show moderate mitigation towards irradiation, indicating that n-ZnO/p-CuGaO2 thin film is capable of withstanding harsh radiation environment while still retaining its semiconductor as the changes in band gap ranges between 3 eV to 4 eV at post-irradiation. IOP Science 2020 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/25584/1/Solar%20assisted%20heat%20pump%20system%20for%20high%20quality%20drying%20applications.pdf Gamma Ray and Neutron Radiation effects on the electrical and st and Fuei Pien Chee and Rosfayanti Rasmidi and Afishah Alias and Saafie Salleh and Khairul Anuar Mohd Salleh and Abi Muttaqin Jalal Bayar (2020) Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode. ECS Journal of Solid State Science and Technology, 9 (4). https://doi.org/10.1149/2162-8777/ab8f19
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
topic QC Physics
spellingShingle QC Physics
Gamma Ray and Neutron Radiation effects on the electrical and st
Fuei Pien Chee
Rosfayanti Rasmidi
Afishah Alias
Saafie Salleh
Khairul Anuar Mohd Salleh
Abi Muttaqin Jalal Bayar
Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
description This research focuses on the radiation tolerance of ZnO and CuGaO2 based semiconductor application for space borne application. In this research, n-ZnO/p-CuGaO2 based semiconductor devices were fabricated and exposed to gamma rays with increasing total ionizing dose (TID) and neutron fluence at different flux. Based on the I-V properties, the decrease in the turn-on voltage of the diode is noticeable with increasing radiation dose for both gamma and neutron flux exposure. The maximum turn-on-voltage of the fabricated diode was shown to be 1.5 V. Exposure towards gamma, shows that the turn-on is increased to 4.7 V at 200 kGy. However, the effect of neutron flux at 6.5 × 1015 n cm−2 shows a small significant effect on the turn on voltage of 1.7 V after irradiation. Results show moderate mitigation towards irradiation, indicating that n-ZnO/p-CuGaO2 thin film is capable of withstanding harsh radiation environment while still retaining its semiconductor as the changes in band gap ranges between 3 eV to 4 eV at post-irradiation.
format Article
author Gamma Ray and Neutron Radiation effects on the electrical and st
Fuei Pien Chee
Rosfayanti Rasmidi
Afishah Alias
Saafie Salleh
Khairul Anuar Mohd Salleh
Abi Muttaqin Jalal Bayar
author_facet Gamma Ray and Neutron Radiation effects on the electrical and st
Fuei Pien Chee
Rosfayanti Rasmidi
Afishah Alias
Saafie Salleh
Khairul Anuar Mohd Salleh
Abi Muttaqin Jalal Bayar
author_sort Gamma Ray and Neutron Radiation effects on the electrical and st
title Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
title_short Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
title_full Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
title_fullStr Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
title_full_unstemmed Gamma Ray and Neutron Radiation effects on the electrical and structural properties of n-ZnO/p-CuGaO2 Schottky Diode
title_sort gamma ray and neutron radiation effects on the electrical and structural properties of n-zno/p-cugao2 schottky diode
publisher IOP Science
publishDate 2020
url https://eprints.ums.edu.my/id/eprint/25584/1/Solar%20assisted%20heat%20pump%20system%20for%20high%20quality%20drying%20applications.pdf
https://eprints.ums.edu.my/id/eprint/25584/
https://doi.org/10.1149/2162-8777/ab8f19
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