Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory
10.1088/1757-899X/188/1/012055
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sg-nus-scholar.10635-1795072024-04-17T10:00:11Z Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory Majidi, M.A Kusumaatmadja, R Fauzi, A.D Phan, W.Y Taufik, A Saleh, R Rusydi, A PHYSICS Electrospinning Functional materials Gas adsorption Graphene Magnetization Mean field theory Nanoparticles Optical conductivity Oxygen Saturation magnetization Dynamical mean field approximation Dynamical mean-field theory Nanoparticle systems Reduced graphene oxides Reduced graphene oxides (RGO) Repulsive interactions Tetrahedral sites Weight percentages Oxygen vacancies 10.1088/1757-899X/188/1/012055 IOP Conference Series: Materials Science and Engineering 188 1 12055 2020-10-23T04:48:19Z 2020-10-23T04:48:19Z 2017 Conference Paper Majidi, M.A, Kusumaatmadja, R, Fauzi, A.D, Phan, W.Y, Taufik, A, Saleh, R, Rusydi, A (2017). Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory. IOP Conference Series: Materials Science and Engineering 188 (1) : 12055. ScholarBank@NUS Repository. https://doi.org/10.1088/1757-899X/188/1/012055 17578981 https://scholarbank.nus.edu.sg/handle/10635/179507 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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Electrospinning Functional materials Gas adsorption Graphene Magnetization Mean field theory Nanoparticles Optical conductivity Oxygen Saturation magnetization Dynamical mean field approximation Dynamical mean-field theory Nanoparticle systems Reduced graphene oxides Reduced graphene oxides (RGO) Repulsive interactions Tetrahedral sites Weight percentages Oxygen vacancies |
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Electrospinning Functional materials Gas adsorption Graphene Magnetization Mean field theory Nanoparticles Optical conductivity Oxygen Saturation magnetization Dynamical mean field approximation Dynamical mean-field theory Nanoparticle systems Reduced graphene oxides Reduced graphene oxides (RGO) Repulsive interactions Tetrahedral sites Weight percentages Oxygen vacancies Majidi, M.A Kusumaatmadja, R Fauzi, A.D Phan, W.Y Taufik, A Saleh, R Rusydi, A Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
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10.1088/1757-899X/188/1/012055 |
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PHYSICS |
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PHYSICS Majidi, M.A Kusumaatmadja, R Fauzi, A.D Phan, W.Y Taufik, A Saleh, R Rusydi, A |
format |
Conference or Workshop Item |
author |
Majidi, M.A Kusumaatmadja, R Fauzi, A.D Phan, W.Y Taufik, A Saleh, R Rusydi, A |
author_sort |
Majidi, M.A |
title |
Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
title_short |
Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
title_full |
Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
title_fullStr |
Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
title_full_unstemmed |
Theoretical exploration of optical response of Fe3O4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
title_sort |
theoretical exploration of optical response of fe3o4-reduced graphene oxide nanoparticle system within dynamical mean-field theory |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/179507 |
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1800914554332381184 |