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Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler

For the first time, we incorporated mesoporous micro-silica (5 μm, pore size = 50 nm) as a filler in epoxy resin aiming to enter polymer into the pore of the silica. As expected, the thermal stability of the composite increased remarkably, followed by noteworthy thermal degradation kinetics when com...

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Autores principales: Yeasmin, Farzana, Mallik, Abul K., Chisty, Adib H., Robel, Fataha N., Shahruzzaman, Md., Haque, Papia, Rahman, Mohammed Mizanur, Hano, Nanami, Takafuji, Makoto, Ihara, Hirotaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7820568/
https://www.ncbi.nlm.nih.gov/pubmed/33521354
http://dx.doi.org/10.1016/j.heliyon.2021.e05959
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author Yeasmin, Farzana
Mallik, Abul K.
Chisty, Adib H.
Robel, Fataha N.
Shahruzzaman, Md.
Haque, Papia
Rahman, Mohammed Mizanur
Hano, Nanami
Takafuji, Makoto
Ihara, Hirotaka
author_facet Yeasmin, Farzana
Mallik, Abul K.
Chisty, Adib H.
Robel, Fataha N.
Shahruzzaman, Md.
Haque, Papia
Rahman, Mohammed Mizanur
Hano, Nanami
Takafuji, Makoto
Ihara, Hirotaka
author_sort Yeasmin, Farzana
collection PubMed
description For the first time, we incorporated mesoporous micro-silica (5 μm, pore size = 50 nm) as a filler in epoxy resin aiming to enter polymer into the pore of the silica. As expected, the thermal stability of the composite increased remarkably, followed by noteworthy thermal degradation kinetics when compared to the controlled cured epoxy resin. Composites were prepared by the direct dispersion of modified nano-silica, modified mesoporous micro-silica, unmodified mesoporous micro-silica, non-porous micro-silica, and irregular micro-silica of various pore sizes as fillers in diglycidyl ether of bisphenol-A epoxy resin via ultra-sonication and shear mixing, followed by oven-curing with 4,4-diaminodiphenyl sulfone. DSC and TGA analyses demonstrated a higher glass transition temperature (increased by 3.65–5.75 °C) and very high activation energy for thermal degradation (average increase = 46.2%) was obtained for the same unmodified silica composite compared to pure epoxy, respectively.
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spelling pubmed-78205682021-01-29 Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler Yeasmin, Farzana Mallik, Abul K. Chisty, Adib H. Robel, Fataha N. Shahruzzaman, Md. Haque, Papia Rahman, Mohammed Mizanur Hano, Nanami Takafuji, Makoto Ihara, Hirotaka Heliyon Research Article For the first time, we incorporated mesoporous micro-silica (5 μm, pore size = 50 nm) as a filler in epoxy resin aiming to enter polymer into the pore of the silica. As expected, the thermal stability of the composite increased remarkably, followed by noteworthy thermal degradation kinetics when compared to the controlled cured epoxy resin. Composites were prepared by the direct dispersion of modified nano-silica, modified mesoporous micro-silica, unmodified mesoporous micro-silica, non-porous micro-silica, and irregular micro-silica of various pore sizes as fillers in diglycidyl ether of bisphenol-A epoxy resin via ultra-sonication and shear mixing, followed by oven-curing with 4,4-diaminodiphenyl sulfone. DSC and TGA analyses demonstrated a higher glass transition temperature (increased by 3.65–5.75 °C) and very high activation energy for thermal degradation (average increase = 46.2%) was obtained for the same unmodified silica composite compared to pure epoxy, respectively. Elsevier 2021-01-18 /pmc/articles/PMC7820568/ /pubmed/33521354 http://dx.doi.org/10.1016/j.heliyon.2021.e05959 Text en © 2021 The Authors. Published by Elsevier Ltd. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Yeasmin, Farzana
Mallik, Abul K.
Chisty, Adib H.
Robel, Fataha N.
Shahruzzaman, Md.
Haque, Papia
Rahman, Mohammed Mizanur
Hano, Nanami
Takafuji, Makoto
Ihara, Hirotaka
Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title_full Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title_fullStr Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title_full_unstemmed Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title_short Remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
title_sort remarkable enhancement of thermal stability of epoxy resin through the incorporation of mesoporous silica micro-filler
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7820568/
https://www.ncbi.nlm.nih.gov/pubmed/33521354
http://dx.doi.org/10.1016/j.heliyon.2021.e05959
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