The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses

The influence of boron oxide on glass-forming ability, phase transformation, and optical properties of new zinc-boro-soda-lime-silicate (ZBSLS) glass system with formulation 60–x(ZnO)x(B2O3)40(SLS) where x = 0, 1, 5, 10 and 15 wt.% using the conventional melt-quenching technique was comprehensively...

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Published in:Journal of Materials Research and Technology
Main Author: 2-s2.0-85112750700
Format: Article
Language:English
Published: Elsevier Editora Ltda 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112750700&doi=10.1016%2fj.jmrt.2020.05.022&partnerID=40&md5=10d198926298e630225dc91028f1db58
id Shofri M.F.S.M.; Zaid M.H.M.; Wahab R.A.A.; Matori K.A.; Aziz S.H.A.; Fen Y.W.
spelling Shofri M.F.S.M.; Zaid M.H.M.; Wahab R.A.A.; Matori K.A.; Aziz S.H.A.; Fen Y.W.
2-s2.0-85112750700
The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
2020
Journal of Materials Research and Technology
9
4
10.1016/j.jmrt.2020.05.022
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112750700&doi=10.1016%2fj.jmrt.2020.05.022&partnerID=40&md5=10d198926298e630225dc91028f1db58
The influence of boron oxide on glass-forming ability, phase transformation, and optical properties of new zinc-boro-soda-lime-silicate (ZBSLS) glass system with formulation 60–x(ZnO)x(B2O3)40(SLS) where x = 0, 1, 5, 10 and 15 wt.% using the conventional melt-quenching technique was comprehensively studied. The glass powder samples were subjected to true density measurement using Helium Pycnometer. Besides, the XRD and FTIR spectroscopy was used to examining the phase and structural rearrangement in the ZBSLS glass system. The XRD result emphasizes the glass samples (G3, G4, and G5) in amorphous nature when boron concentration is more than 5 wt.% in the ZBSLS glass matrix. Also, the UV–Vis spectra were observed within 200–800 nm. At that point, the data from optical absorbance was converted to justify the optical band gap energy using Mott and Davis theory. The optical band gap energy show increment behavior from 4.35 to 5.25 eV for direct allowed transition and 3.25–4.30 eV for indirect allowed transition with the progress of boron concentration, respectively. © 2020 The Author(s)
Elsevier Editora Ltda
22387854
English
Article
All Open Access; Gold Open Access
author 2-s2.0-85112750700
spellingShingle 2-s2.0-85112750700
The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
author_facet 2-s2.0-85112750700
author_sort 2-s2.0-85112750700
title The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
title_short The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
title_full The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
title_fullStr The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
title_full_unstemmed The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
title_sort The effect of boron substitution on the glass-forming ability, phase transformation and optical performance of zinc-boro-soda-lime-silicate glasses
publishDate 2020
container_title Journal of Materials Research and Technology
container_volume 9
container_issue 4
doi_str_mv 10.1016/j.jmrt.2020.05.022
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85112750700&doi=10.1016%2fj.jmrt.2020.05.022&partnerID=40&md5=10d198926298e630225dc91028f1db58
description The influence of boron oxide on glass-forming ability, phase transformation, and optical properties of new zinc-boro-soda-lime-silicate (ZBSLS) glass system with formulation 60–x(ZnO)x(B2O3)40(SLS) where x = 0, 1, 5, 10 and 15 wt.% using the conventional melt-quenching technique was comprehensively studied. The glass powder samples were subjected to true density measurement using Helium Pycnometer. Besides, the XRD and FTIR spectroscopy was used to examining the phase and structural rearrangement in the ZBSLS glass system. The XRD result emphasizes the glass samples (G3, G4, and G5) in amorphous nature when boron concentration is more than 5 wt.% in the ZBSLS glass matrix. Also, the UV–Vis spectra were observed within 200–800 nm. At that point, the data from optical absorbance was converted to justify the optical band gap energy using Mott and Davis theory. The optical band gap energy show increment behavior from 4.35 to 5.25 eV for direct allowed transition and 3.25–4.30 eV for indirect allowed transition with the progress of boron concentration, respectively. © 2020 The Author(s)
publisher Elsevier Editora Ltda
issn 22387854
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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