Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications

The present study is aimed to develop a highly sensitive and tissue equivalent thermoluminescent dosimeter for quality assurance in modern radiotherapy techniques and industrial applications. Series of MgB4O7 glasses, of compositions X(MgO) - 100-X(B2O3) where 35 ≤ X ≤ 45 mol%, Magnesium Borate (MB)...

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Main Author: Bakhsh, Muhammad
Format: Thesis
Language:English
Published: 2018
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Online Access:http://eprints.usm.my/44224/1/MUHAMMAD%20BAKHSH.pdf
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spelling my-usm-ep.442242019-04-26T01:39:10Z Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications 2018-04 Bakhsh, Muhammad QC1 Physics (General) The present study is aimed to develop a highly sensitive and tissue equivalent thermoluminescent dosimeter for quality assurance in modern radiotherapy techniques and industrial applications. Series of MgB4O7 glasses, of compositions X(MgO) - 100-X(B2O3) where 35 ≤ X ≤ 45 mol%, Magnesium Borate (MB), X(ZnO) - 35-X(MgO) - 65(B2O3) where 0.1 ≤ X ≤ 1 mol%, Zinc doped Magnesium Borate (MB:Zn) and X(Li2O) - 0.4(ZnO) - 35- X (MgO) - 65(B2O3) where 0.01 ≤ X ≤ 0.1 mol%, Lithium co-doped Zinc doped Magnesium Borate (MB:Zn, Li) are synthesized using conventional melt-quenching method. The amorphous nature of synthesized samples is analysed through X-ray diffraction (XRD) and further confirmed with Field Emission Scanning Electron Microscopy (FESEM). 2018-04 Thesis http://eprints.usm.my/44224/ http://eprints.usm.my/44224/1/MUHAMMAD%20BAKHSH.pdf application/pdf en public phd doctoral Universiti Sains Malaysia Pusat Pengajian Sains Fizik
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic QC1 Physics (General)
spellingShingle QC1 Physics (General)
Bakhsh, Muhammad
Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
description The present study is aimed to develop a highly sensitive and tissue equivalent thermoluminescent dosimeter for quality assurance in modern radiotherapy techniques and industrial applications. Series of MgB4O7 glasses, of compositions X(MgO) - 100-X(B2O3) where 35 ≤ X ≤ 45 mol%, Magnesium Borate (MB), X(ZnO) - 35-X(MgO) - 65(B2O3) where 0.1 ≤ X ≤ 1 mol%, Zinc doped Magnesium Borate (MB:Zn) and X(Li2O) - 0.4(ZnO) - 35- X (MgO) - 65(B2O3) where 0.01 ≤ X ≤ 0.1 mol%, Lithium co-doped Zinc doped Magnesium Borate (MB:Zn, Li) are synthesized using conventional melt-quenching method. The amorphous nature of synthesized samples is analysed through X-ray diffraction (XRD) and further confirmed with Field Emission Scanning Electron Microscopy (FESEM).
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Bakhsh, Muhammad
author_facet Bakhsh, Muhammad
author_sort Bakhsh, Muhammad
title Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
title_short Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
title_full Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
title_fullStr Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
title_full_unstemmed Synthesis, Characterization And Evaluation Of Zinc Doped MgB4O7 Based Glass Thermoluminescence Dosimeter For Radiotherapy And Industrial Applications
title_sort synthesis, characterization and evaluation of zinc doped mgb4o7 based glass thermoluminescence dosimeter for radiotherapy and industrial applications
granting_institution Universiti Sains Malaysia
granting_department Pusat Pengajian Sains Fizik
publishDate 2018
url http://eprints.usm.my/44224/1/MUHAMMAD%20BAKHSH.pdf
_version_ 1747821342383669248