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Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications

Nanocomposite films grown by incorporating varying concentrations of Yttrium, a d-block rare-earth ion, into the binary chalcogenide Arsenic selenide host matrix is here presented. Films were grown via the wet-chemical electro-deposition technique and characterized for structural, optical, surface m...

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Autores principales: Awada, Chawki, Whyte, Goodfriend M., Offor, Peter O., Whyte, Favour U., Kanoun, Mohammed Benali, Goumri-Said, Souraya, Alshoaibi, Adil, Ekwealor, Azubike B. C., Maaza, Malik, Ezema, Fabian I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7466404/
https://www.ncbi.nlm.nih.gov/pubmed/32784377
http://dx.doi.org/10.3390/nano10081557
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author Awada, Chawki
Whyte, Goodfriend M.
Offor, Peter O.
Whyte, Favour U.
Kanoun, Mohammed Benali
Goumri-Said, Souraya
Alshoaibi, Adil
Ekwealor, Azubike B. C.
Maaza, Malik
Ezema, Fabian I.
author_facet Awada, Chawki
Whyte, Goodfriend M.
Offor, Peter O.
Whyte, Favour U.
Kanoun, Mohammed Benali
Goumri-Said, Souraya
Alshoaibi, Adil
Ekwealor, Azubike B. C.
Maaza, Malik
Ezema, Fabian I.
author_sort Awada, Chawki
collection PubMed
description Nanocomposite films grown by incorporating varying concentrations of Yttrium, a d-block rare-earth ion, into the binary chalcogenide Arsenic selenide host matrix is here presented. Films were grown via the wet-chemical electro-deposition technique and characterized for structural, optical, surface morphology, and photoluminescence (PL) properties. The X-ray Diffraction (XRD) result of the host matrix (pristine film) showed films of monoclinic structure with an average grain size of 36.2 nm. The composite films, on the other hand, had both cubic YAs and tetragonal YSe structures with average size within 36.5–46.8 nm. The fairly homogeneous nano-sized films are shown by the Scanning Electron Microscopy (SEM) micrographs while the two phases of the composite films present in the XRD patterns were confirmed by the Raman shifts due to the cleavage of the As-Se host matrix and formation of new structural units. The refractive index peaked at 2.63 within 350–600 nm. The bandgap energy lies in the range of 3.84–3.95 eV with a slight decrease with increasing Y addition; while the PL spectra depict emission bands across the Vis-NIR spectral regions. Theoretically, the density functional theory (DFT) simulations provided insight into the changes induced in the structure, bonding, and electronic properties. Besides reducing the bandgap of the As(2)Se(3), the yttrium addition has induced a lone pair p-states of Se contributing nearby to Fermi energy level. The optical constants, and structural and electronic features of the films obtained present suitable features of film for IR applications as well as in optoelectronics.
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spelling pubmed-74664042020-09-14 Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications Awada, Chawki Whyte, Goodfriend M. Offor, Peter O. Whyte, Favour U. Kanoun, Mohammed Benali Goumri-Said, Souraya Alshoaibi, Adil Ekwealor, Azubike B. C. Maaza, Malik Ezema, Fabian I. Nanomaterials (Basel) Article Nanocomposite films grown by incorporating varying concentrations of Yttrium, a d-block rare-earth ion, into the binary chalcogenide Arsenic selenide host matrix is here presented. Films were grown via the wet-chemical electro-deposition technique and characterized for structural, optical, surface morphology, and photoluminescence (PL) properties. The X-ray Diffraction (XRD) result of the host matrix (pristine film) showed films of monoclinic structure with an average grain size of 36.2 nm. The composite films, on the other hand, had both cubic YAs and tetragonal YSe structures with average size within 36.5–46.8 nm. The fairly homogeneous nano-sized films are shown by the Scanning Electron Microscopy (SEM) micrographs while the two phases of the composite films present in the XRD patterns were confirmed by the Raman shifts due to the cleavage of the As-Se host matrix and formation of new structural units. The refractive index peaked at 2.63 within 350–600 nm. The bandgap energy lies in the range of 3.84–3.95 eV with a slight decrease with increasing Y addition; while the PL spectra depict emission bands across the Vis-NIR spectral regions. Theoretically, the density functional theory (DFT) simulations provided insight into the changes induced in the structure, bonding, and electronic properties. Besides reducing the bandgap of the As(2)Se(3), the yttrium addition has induced a lone pair p-states of Se contributing nearby to Fermi energy level. The optical constants, and structural and electronic features of the films obtained present suitable features of film for IR applications as well as in optoelectronics. MDPI 2020-08-08 /pmc/articles/PMC7466404/ /pubmed/32784377 http://dx.doi.org/10.3390/nano10081557 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Awada, Chawki
Whyte, Goodfriend M.
Offor, Peter O.
Whyte, Favour U.
Kanoun, Mohammed Benali
Goumri-Said, Souraya
Alshoaibi, Adil
Ekwealor, Azubike B. C.
Maaza, Malik
Ezema, Fabian I.
Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title_full Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title_fullStr Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title_full_unstemmed Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title_short Synthesis and Studies of Electro-Deposited Yttrium Arsenic Selenide Nanofilms for Opto-Electronic Applications
title_sort synthesis and studies of electro-deposited yttrium arsenic selenide nanofilms for opto-electronic applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7466404/
https://www.ncbi.nlm.nih.gov/pubmed/32784377
http://dx.doi.org/10.3390/nano10081557
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