2022
DOI: 10.3390/nano12183147
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Synthesis and Characterization of Polyvinyl Chloride Matrix Composites with Modified Scrap Iron for Advanced Electronic, Photonic, and Optical Systems

Abstract: In this study, Fe2O3 powder was synthesized using the co-precipitation method from scrap iron, which was then treated with varying concentrations of copper. Afterwards, the modified Fe2O3 was reinforced in the PVC matrix by using the solution-casting method to synthesize PVC composite films, which were subjected to a UV-visible spectrophotometer, a Fourier transform infrared spectrophotometer, an X-ray diffractometer, and a thermal gravimetric analyzer to evaluate the optical, chemical, structural, and thermal… Show more

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Cited by 8 publications
(4 citation statements)
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“…Thus, PVC bands can be observed at 2872 and 2927 cm -1 (stretch vibration of the -CH bond); The band from 1424 cm -1 (wagging of CH2), 1333 cm -1 (deformation of CH2 bond from CH-Cl group), the band from 1273 and 1073 cm -1 (the stretching vibration of the C-H bonds from the -CH-Cl group) and the one at 963 cm -1 (rocking of CH2). The band at 614.27 cm -1 is associated with the (Hashmi et al, 2022). The bands coming from dibutyl phthalate can be identified at 1724 cm -1 (the stretching vibration of the C=O ester group), at 1600 and 1580 cm -1 (stretching vibration of the aromatic ring structure) and those of 1122 and 1073 cm -1 are attributed to C-O stretching vibration (Kumari and Kaur, 2022).…”
Section: Primary Identification Process (Ftir Analysis)mentioning
confidence: 96%
“…Thus, PVC bands can be observed at 2872 and 2927 cm -1 (stretch vibration of the -CH bond); The band from 1424 cm -1 (wagging of CH2), 1333 cm -1 (deformation of CH2 bond from CH-Cl group), the band from 1273 and 1073 cm -1 (the stretching vibration of the C-H bonds from the -CH-Cl group) and the one at 963 cm -1 (rocking of CH2). The band at 614.27 cm -1 is associated with the (Hashmi et al, 2022). The bands coming from dibutyl phthalate can be identified at 1724 cm -1 (the stretching vibration of the C=O ester group), at 1600 and 1580 cm -1 (stretching vibration of the aromatic ring structure) and those of 1122 and 1073 cm -1 are attributed to C-O stretching vibration (Kumari and Kaur, 2022).…”
Section: Primary Identification Process (Ftir Analysis)mentioning
confidence: 96%
“…FTIR spectra of: raw PVC, PVC NBR unchanged and NBR / 10%PDMS waste and P0 (50:50 raw PVC: PVC waste) Thus, PVC bands can be observed at 2872 and 2927 cm -1 (stretch vibration of the -CH bond); The band from 1424 cm -1 (wagging of CH2), 1333 cm -1 (deformation of CH2 bond from CH-Cl group), the band from 1273 and 1073 cm -1 (the stretching vibration of the C-H bonds from the -CH-Cl group) and the one at 963 cm -1 (rocking of CH2). The band at 614.27 cm -1 is associated with the C-Cl bond (Hashmi et al, 2022). The bands coming from dibutyl phthalate can be identified at 1724 cm -1 (the stretching vibration of the C=O ester group), at 1600 and 1580 cm -1 (stretching vibration of the aromatic ring structure) and those of 1122 and 1073 cm -1 are attributed to C-O stretching vibration (Kumari and Kaur, 2022).…”
Section: Primary Identification Process (Ftir Analysis)mentioning
confidence: 96%
“…These nanoscaled fillers are embedded in a continuous phase of polymer, metal or ceramics matrix [4]. Almost all varieties of polymers are used as matrices such as thermoplastics; polyurethane (PU) [5], polyethylene (PE) [6], polyvinyl chloride (PVC) [7], thermosets; epoxy polyimide [8] and phenolic resin [9] and elastomers; polybutadiene (PB) [10], ethylene-octene copolymer (EOC) [11]. These fillers may be of 0 dimensional (0D), one-dimensional (1D), two-dimensional (2D) and three-dimensional (3D).…”
Section: Introductionmentioning
confidence: 99%