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Low-energy α-particle irradiation of polymeric-based nanofiller
Faculty
Science
Year:
2023
Type of Publication:
ZU Hosted
Pages:
Authors:
Mahmoud ElGhazaly Mohamed Moahmed
Staff Zu Site
Abstract In Staff Site
Journal:
The European Physical Journal Plus springer
Volume:
Keywords :
Low-energy α-particle irradiation , polymeric-based nanofiller
Abstract:
In this study, the induced defects and modifications enhanced by alpha particle on CdO and ZnSe-doped polymethyl methacrylate (PMMA) were investigated. Casting method was used to prepare three sets of thin polymeric sheets doped with variable concentrations of the selected fillers. The prepared CdO and ZnSe particles were in the range 3–21 nm. The samples were irradiated with 4.5 MeV α-particle emitted from 241Am radioactive source at gradually increased fluence. The enhanced change that occurred in the physical properties for both types of samples due to α-particle irradiation was measured using Fourier transform infrared (FTIR), X-ray diffraction (XRD), ultraviolet–visible spectroscopy (UV–Vis), photoluminescence (PL) spectroscopy. All the pristine samples exhibited two separated direct band gaps around 4.0 eV and 4.6 eV, while the irradiated samples showed decreasing for the first band gap up to 3.71 and the second gap remained almost unchanged. The three investigated sets displayed PL emission peaks within the range 270–700 nm. The intensity of the PL peaks was increased by increasing the filler concentration. The net PL was quantified using the area under the emission peaks which showed that α-particle causes interchangeable defects and cross-linking processes. The formation of C–H and O–H function groups due to α-particle interactions was confirmed by FTIR analysis. The results revealed that the filler–polymer interface has a great impact on the formed defects which control the observed characteristics in the polymeric composite medium. The presented data are very helpful for α-particle dosimetric applications using these types of polymeric composites.
Author Related Publications
Mahmoud ElGhazaly Mohamed Moahmed, "Improvement of Makrofol De 7-2 polycarbonate optical properties by thermal annealing for the registration of alpha particles", Results in Physics, 2016
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Mahmoud ElGhazaly Mohamed Moahmed, "Irradiation influence on Mylar and Makrofol induced by argon ions ina plasma immersion ion implantation system.", Applied Surface Science, 2014
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Mahmoud ElGhazaly Mohamed Moahmed, "Improvement of Makrofol® DُE 7-2 polycarbonate optical properties by thermal annealing for the registration of alpha particles", elsevier, 2016
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Mahmoud ElGhazaly Mohamed Moahmed, "Photoluminescence emission spectra of Makrofol® DE 1-1 upon irradiation with ultraviolet radiation", Elsevier, 2017
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Mahmoud ElGhazaly Mohamed Moahmed, "On induced-modifications in optical properties of Makrofol® DE 1-1 SSNTD by UVB and UVA", elsevier, 2017
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