Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)

Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS) by Mohammad Fariz Mohamad Taib

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Main Author: Mohammad Fariz Mohamad Taib
Format: article
Language:English
Published: Tanjung Malim 2021
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Online Access:https://ir.upsi.edu.my/detailsg.php?det=8428
https://ir.upsi.edu.my/detailsg.php?det=8428
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spelling oai:ir.upsi.edu.my:84282022-11-08 https://ir.upsi.edu.my/detailsg.php?det=8428 Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS) Mohammad Fariz Mohamad Taib N/A Tanjung Malim 2021 article text eng https://ir.upsi.edu.my/detailsg.php?det=8428 closedAccess Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS) by Mohammad Fariz Mohamad Taib
institution Universiti Pendidikan Sultan Idris
building UPSI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Pendidikan Sultan Idris
content_source UPSI Digital IR
url_provider https://ir.upsi.edu.my/
language English
topic N/A
spellingShingle N/A
Mohammad Fariz Mohamad Taib
Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
description Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS) by Mohammad Fariz Mohamad Taib
format article
author Mohammad Fariz Mohamad Taib
author_facet Mohammad Fariz Mohamad Taib
author_sort Mohammad Fariz Mohamad Taib
title Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
title_short Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
title_full Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
title_fullStr Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
title_full_unstemmed Underlying mechanism of surface (001) cubic ATiO3 (A = Pb, Sn) in enhancing thermoelectric performance of thin-film application using density functional theory (SCOPUS)
title_sort underlying mechanism of surface (001) cubic atio3 (a = pb, sn) in enhancing thermoelectric performance of thin-film application using density functional theory (scopus)
publisher Tanjung Malim
publishDate 2021
url https://ir.upsi.edu.my/detailsg.php?det=8428
https://ir.upsi.edu.my/detailsg.php?det=8428
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score 13.222552