A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review

The thrust to find new technology and materials has been greatly increasing due to environmental and technological challenges in the progressive world. Among new standard materials and advanced nano-materials that possess a huge potential and superior thermal, mechanical, optical, and magnetic prope...

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Main Authors: Jastaneyah, Zuhair, M. Kamar, Haslinda, Alansari, Abdulrahman, Al Garalleh, Hakim
Format: Article
Language:English
Published: MDPI 2023
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Online Access:http://eprints.utm.my/107324/1/HaslindaMKamar2023_AComparativeAnalysisofStandardandNanoStructured.pdf
http://eprints.utm.my/107324/
http://dx.doi.org/10.3390/su15129221
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spelling my.utm.1073242024-09-01T07:13:34Z http://eprints.utm.my/107324/ A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review Jastaneyah, Zuhair M. Kamar, Haslinda Alansari, Abdulrahman Al Garalleh, Hakim TJ Mechanical engineering and machinery The thrust to find new technology and materials has been greatly increasing due to environmental and technological challenges in the progressive world. Among new standard materials and advanced nano-materials that possess a huge potential and superior thermal, mechanical, optical, and magnetic properties, which have made them excellent and suitable components for mechanical engineering applications. The current review paper deals with recent enhancements and advances in the properties of nano-structured glasses and composites in terms of thermal and mechanical properties. A fabrication method of nano-structured glass has briefly been discussed and the phase change material (PCM) method outlined. The comprehensive review of thermal and optical properties confirms that nano-fabricated glasses show both direct and indirect running of band gaps depending on selective nano-structuring samples. The electrical and magnetic properties also show enhancement in electrical conductivity on nano-structured glasses compared to their standard counterparts. The realistic changes in thermal and mechanical properties of nano-structured glasses and composites are commonly attributed to many micro- and nano-structural distribution features like grain size, shape, pores, other flaws and defects, surface condition, impurity level, stress, duration of temperature effect on the selective samples. Literature reports that nano-structuring materials lead to enhanced phonon boundary scattering which reduces thermal conductivity and energy consumption. MDPI 2023-06 Article PeerReviewed application/pdf en http://eprints.utm.my/107324/1/HaslindaMKamar2023_AComparativeAnalysisofStandardandNanoStructured.pdf Jastaneyah, Zuhair and M. Kamar, Haslinda and Alansari, Abdulrahman and Al Garalleh, Hakim (2023) A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review. Sustainability (Switzerland), 15 (12). pp. 1-15. ISSN 2071-1050 http://dx.doi.org/10.3390/su15129221 DOI:10.3390/su15129221
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Jastaneyah, Zuhair
M. Kamar, Haslinda
Alansari, Abdulrahman
Al Garalleh, Hakim
A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
description The thrust to find new technology and materials has been greatly increasing due to environmental and technological challenges in the progressive world. Among new standard materials and advanced nano-materials that possess a huge potential and superior thermal, mechanical, optical, and magnetic properties, which have made them excellent and suitable components for mechanical engineering applications. The current review paper deals with recent enhancements and advances in the properties of nano-structured glasses and composites in terms of thermal and mechanical properties. A fabrication method of nano-structured glass has briefly been discussed and the phase change material (PCM) method outlined. The comprehensive review of thermal and optical properties confirms that nano-fabricated glasses show both direct and indirect running of band gaps depending on selective nano-structuring samples. The electrical and magnetic properties also show enhancement in electrical conductivity on nano-structured glasses compared to their standard counterparts. The realistic changes in thermal and mechanical properties of nano-structured glasses and composites are commonly attributed to many micro- and nano-structural distribution features like grain size, shape, pores, other flaws and defects, surface condition, impurity level, stress, duration of temperature effect on the selective samples. Literature reports that nano-structuring materials lead to enhanced phonon boundary scattering which reduces thermal conductivity and energy consumption.
format Article
author Jastaneyah, Zuhair
M. Kamar, Haslinda
Alansari, Abdulrahman
Al Garalleh, Hakim
author_facet Jastaneyah, Zuhair
M. Kamar, Haslinda
Alansari, Abdulrahman
Al Garalleh, Hakim
author_sort Jastaneyah, Zuhair
title A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
title_short A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
title_full A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
title_fullStr A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
title_full_unstemmed A comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
title_sort comparative analysis of standard and nano-structured glass for enhancing heat transfer and reducing energy consumption using metal and oxide nanoparticles: a review
publisher MDPI
publishDate 2023
url http://eprints.utm.my/107324/1/HaslindaMKamar2023_AComparativeAnalysisofStandardandNanoStructured.pdf
http://eprints.utm.my/107324/
http://dx.doi.org/10.3390/su15129221
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score 13.214268