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An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)

Here we present a comprehensive density functional theory (DFT) based ab initio study of copper bismuth oxide CuBi(2)O(4) (CBO) in combination with experimental observations. The CBO samples were prepared following both solid-state reaction (SCBO) and hydrothermal (HCBO) methods. The P4/ncc phase pu...

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Autores principales: Hossain, Quazi Shafayat, Ahmed, Shahran, Nishat, Sadiq Shahriyar, Hossain, Md. Zarif, Khan, M. N. I., Hasan, Tarique, Bashar, Muhammad Shahriar, Hakim, Mahmuda, Syed, Ishtiaque M., Hossain, Khandker Saadat, Ahmed, Imtiaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170495/
https://www.ncbi.nlm.nih.gov/pubmed/37180022
http://dx.doi.org/10.1039/d3ra01813j
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author Hossain, Quazi Shafayat
Ahmed, Shahran
Nishat, Sadiq Shahriyar
Hossain, Md. Zarif
Khan, M. N. I.
Hasan, Tarique
Bashar, Muhammad Shahriar
Hakim, Mahmuda
Syed, Ishtiaque M.
Hossain, Khandker Saadat
Ahmed, Imtiaz
author_facet Hossain, Quazi Shafayat
Ahmed, Shahran
Nishat, Sadiq Shahriyar
Hossain, Md. Zarif
Khan, M. N. I.
Hasan, Tarique
Bashar, Muhammad Shahriar
Hakim, Mahmuda
Syed, Ishtiaque M.
Hossain, Khandker Saadat
Ahmed, Imtiaz
author_sort Hossain, Quazi Shafayat
collection PubMed
description Here we present a comprehensive density functional theory (DFT) based ab initio study of copper bismuth oxide CuBi(2)O(4) (CBO) in combination with experimental observations. The CBO samples were prepared following both solid-state reaction (SCBO) and hydrothermal (HCBO) methods. The P4/ncc phase purity of the as-synthesized samples was corroborated by Rietveld refinement of the powdered X-ray diffraction measurements along with Generalized Gradient Approximation of Perdew–Burke–Ernzerhof (GGA-PBE) and the Hubbard interaction U corrected GGA-PBE+U relaxed crystallographic parameters. Scanning and field emission scanning electron micrographs confirmed the particle size of the SCBO and HCBO samples to be ∼250 and ∼60 nm respectively. The GGA-PBE and GGA-PBE+U derived Raman peaks are in better agreement with that of the experimentally observed ones when compared to local density approximation based results. The DFT derived phonon density of states conforms with the absorption bands in Fourier transform infrared spectra. Both structural and dynamic stability criteria of the CBO are confirmed by elastic tensor and density functional perturbation theory-based phonon band structure simulations respectively. The CBO band gap underestimation of GGA-PBE as compared to UV-vis diffuse reflectance derived 1.8 eV was eliminated by tuning the U and the Hartree–Fock exact-exchange mixing parameter α(HF) in GGA-PBE+U and Heyd–Scuseria–Ernzerhof (HSE06) hybrid functionals respectively. The HSE06 with α(HF) = 14% yields the optimum linear optical properties of CBO in terms of the dielectric function, absorption, and their derivatives as compared to that of GGA-PBE and GGA-PBE+U functionals. Our as-synthesized HCBO shows ∼70% photocatalytic efficiency in degrading methylene blue dye under 3 h optical illumination. This DFT-guided experimental approach to CBO may help to gain a better understanding of its functional properties.
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spelling pubmed-101704952023-05-11 An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4) Hossain, Quazi Shafayat Ahmed, Shahran Nishat, Sadiq Shahriyar Hossain, Md. Zarif Khan, M. N. I. Hasan, Tarique Bashar, Muhammad Shahriar Hakim, Mahmuda Syed, Ishtiaque M. Hossain, Khandker Saadat Ahmed, Imtiaz RSC Adv Chemistry Here we present a comprehensive density functional theory (DFT) based ab initio study of copper bismuth oxide CuBi(2)O(4) (CBO) in combination with experimental observations. The CBO samples were prepared following both solid-state reaction (SCBO) and hydrothermal (HCBO) methods. The P4/ncc phase purity of the as-synthesized samples was corroborated by Rietveld refinement of the powdered X-ray diffraction measurements along with Generalized Gradient Approximation of Perdew–Burke–Ernzerhof (GGA-PBE) and the Hubbard interaction U corrected GGA-PBE+U relaxed crystallographic parameters. Scanning and field emission scanning electron micrographs confirmed the particle size of the SCBO and HCBO samples to be ∼250 and ∼60 nm respectively. The GGA-PBE and GGA-PBE+U derived Raman peaks are in better agreement with that of the experimentally observed ones when compared to local density approximation based results. The DFT derived phonon density of states conforms with the absorption bands in Fourier transform infrared spectra. Both structural and dynamic stability criteria of the CBO are confirmed by elastic tensor and density functional perturbation theory-based phonon band structure simulations respectively. The CBO band gap underestimation of GGA-PBE as compared to UV-vis diffuse reflectance derived 1.8 eV was eliminated by tuning the U and the Hartree–Fock exact-exchange mixing parameter α(HF) in GGA-PBE+U and Heyd–Scuseria–Ernzerhof (HSE06) hybrid functionals respectively. The HSE06 with α(HF) = 14% yields the optimum linear optical properties of CBO in terms of the dielectric function, absorption, and their derivatives as compared to that of GGA-PBE and GGA-PBE+U functionals. Our as-synthesized HCBO shows ∼70% photocatalytic efficiency in degrading methylene blue dye under 3 h optical illumination. This DFT-guided experimental approach to CBO may help to gain a better understanding of its functional properties. The Royal Society of Chemistry 2023-05-10 /pmc/articles/PMC10170495/ /pubmed/37180022 http://dx.doi.org/10.1039/d3ra01813j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hossain, Quazi Shafayat
Ahmed, Shahran
Nishat, Sadiq Shahriyar
Hossain, Md. Zarif
Khan, M. N. I.
Hasan, Tarique
Bashar, Muhammad Shahriar
Hakim, Mahmuda
Syed, Ishtiaque M.
Hossain, Khandker Saadat
Ahmed, Imtiaz
An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title_full An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title_fullStr An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title_full_unstemmed An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title_short An ab initio DFT perspective on experimentally synthesized CuBi(2)O(4)
title_sort ab initio dft perspective on experimentally synthesized cubi(2)o(4)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170495/
https://www.ncbi.nlm.nih.gov/pubmed/37180022
http://dx.doi.org/10.1039/d3ra01813j
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