Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend

A blend of polyethylene oxide (PEO)/polyvinyl alcohol (PVA) filled with gradient concentrations of selenium nanoparticles (SeNPs) was prepared using a conventional casting technique. The influence of selenium content variation on structural, optical, and surface characteristics of the studied nanoco...

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Main Authors: A.L. Waly, A.M. Abdelghany, A.E. Tarabiah
Format: Article
Language:English
Published: Elsevier 2021-09-01
Series:Journal of Materials Research and Technology
Subjects:
PVA
PEO
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785421009030
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spelling doaj-a0ae2e7e4816473c81d84f3ce29da95a2021-09-25T05:07:38ZengElsevierJournal of Materials Research and Technology2238-78542021-09-011429622969Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blendA.L. Waly0A.M. Abdelghany1A.E. Tarabiah2Basic Science Department, Higher Institute of Engineering and Technology, New Damietta, Egypt; Corresponding author.Spectroscopy Department, Physics Division, National Research Center, 33 ElBehouth St., Dokki, 12311, Cairo, Egypt; Department of Basic Science, Horus University, International Coastal Road, New Damietta, Damietta, EgyptDental Biomaterials Department, Faculty of Oral and Dental Medicine, Delta University for Science and Technology, Gamassa, EgyptA blend of polyethylene oxide (PEO)/polyvinyl alcohol (PVA) filled with gradient concentrations of selenium nanoparticles (SeNPs) was prepared using a conventional casting technique. The influence of selenium content variation on structural, optical, and surface characteristics of the studied nanocomposite films was evaluated. Characterization studies have shown that the blend ensures a uniform and controlled distribution of SeNPs within the polymer network. Infrared spectral data exhibited changes in the intensities and position of the characteristic absorption peaks within the fingerprint region extended from 1700 to 700 cm−1 for virgin and filled PEO/PVA blend samples. X-ray diffraction pattern of studied nanocomposites displays a semi-crystalline behavior that decreased with increasing SeNPs content. Both FTIR and XRD spectral data support the interaction between organic and inorganic compartments. Furthermore, the UV–visible spectra show a notable increase in absorbance combined with values and a new absorption peak appears at ~200, which gradually shifts to the side of the higher wavelength as the content of SeNPs increases. TEM images confirm the presence of spherical and crystalline SeNPs nanoparticles with radii ranging between 30 and 70 nm.http://www.sciencedirect.com/science/article/pii/S2238785421009030Selenium nanoparticlesPVAPEOFTIR
collection DOAJ
language English
format Article
sources DOAJ
author A.L. Waly
A.M. Abdelghany
A.E. Tarabiah
spellingShingle A.L. Waly
A.M. Abdelghany
A.E. Tarabiah
Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
Journal of Materials Research and Technology
Selenium nanoparticles
PVA
PEO
FTIR
author_facet A.L. Waly
A.M. Abdelghany
A.E. Tarabiah
author_sort A.L. Waly
title Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
title_short Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
title_full Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
title_fullStr Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
title_full_unstemmed Study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (PEO/PVA) polymer blend
title_sort study the structure of selenium modified polyethylene oxide/polyvinyl alcohol (peo/pva) polymer blend
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2021-09-01
description A blend of polyethylene oxide (PEO)/polyvinyl alcohol (PVA) filled with gradient concentrations of selenium nanoparticles (SeNPs) was prepared using a conventional casting technique. The influence of selenium content variation on structural, optical, and surface characteristics of the studied nanocomposite films was evaluated. Characterization studies have shown that the blend ensures a uniform and controlled distribution of SeNPs within the polymer network. Infrared spectral data exhibited changes in the intensities and position of the characteristic absorption peaks within the fingerprint region extended from 1700 to 700 cm−1 for virgin and filled PEO/PVA blend samples. X-ray diffraction pattern of studied nanocomposites displays a semi-crystalline behavior that decreased with increasing SeNPs content. Both FTIR and XRD spectral data support the interaction between organic and inorganic compartments. Furthermore, the UV–visible spectra show a notable increase in absorbance combined with values and a new absorption peak appears at ~200, which gradually shifts to the side of the higher wavelength as the content of SeNPs increases. TEM images confirm the presence of spherical and crystalline SeNPs nanoparticles with radii ranging between 30 and 70 nm.
topic Selenium nanoparticles
PVA
PEO
FTIR
url http://www.sciencedirect.com/science/article/pii/S2238785421009030
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