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A green approach to improve antibacterial properties of PVC/PVDF film doped by silver nanoparticles via nanosecond laser ablation for wound healing application
by
El-Bahnasy, S. S.
, Ayad, D. M.
, Khalaf, Mohamed
, Menazea, A. A.
in
631/57
/ 639/925
/ Ablation
/ Anti-Bacterial Agents - chemistry
/ Anti-Bacterial Agents - pharmacology
/ Antibacterial activity
/ Antimicrobial agents
/ E coli
/ Escherichia coli - drug effects
/ Green Chemistry Technology
/ Humanities and Social Sciences
/ Laser ablation
/ Laser Therapy - methods
/ Lasers
/ Metal Nanoparticles - chemistry
/ Microbial Sensitivity Tests
/ multidisciplinary
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanoparticles
/ Pneumonia
/ Polyvinyl chloride
/ Polyvinyl Chloride - chemistry
/ Polyvinyls - chemistry
/ PVC/PVDF
/ Science
/ Science (multidisciplinary)
/ Silver
/ Silver - chemistry
/ Silver - pharmacology
/ Silver nanoparticles
/ Spectroscopy, Fourier Transform Infrared
/ Spectrum analysis
/ Staphylococcus aureus - drug effects
/ Variance analysis
/ Wound healing
/ Wound Healing - drug effects
2024
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A green approach to improve antibacterial properties of PVC/PVDF film doped by silver nanoparticles via nanosecond laser ablation for wound healing application
by
El-Bahnasy, S. S.
, Ayad, D. M.
, Khalaf, Mohamed
, Menazea, A. A.
in
631/57
/ 639/925
/ Ablation
/ Anti-Bacterial Agents - chemistry
/ Anti-Bacterial Agents - pharmacology
/ Antibacterial activity
/ Antimicrobial agents
/ E coli
/ Escherichia coli - drug effects
/ Green Chemistry Technology
/ Humanities and Social Sciences
/ Laser ablation
/ Laser Therapy - methods
/ Lasers
/ Metal Nanoparticles - chemistry
/ Microbial Sensitivity Tests
/ multidisciplinary
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanoparticles
/ Pneumonia
/ Polyvinyl chloride
/ Polyvinyl Chloride - chemistry
/ Polyvinyls - chemistry
/ PVC/PVDF
/ Science
/ Science (multidisciplinary)
/ Silver
/ Silver - chemistry
/ Silver - pharmacology
/ Silver nanoparticles
/ Spectroscopy, Fourier Transform Infrared
/ Spectrum analysis
/ Staphylococcus aureus - drug effects
/ Variance analysis
/ Wound healing
/ Wound Healing - drug effects
2024
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A green approach to improve antibacterial properties of PVC/PVDF film doped by silver nanoparticles via nanosecond laser ablation for wound healing application
by
El-Bahnasy, S. S.
, Ayad, D. M.
, Khalaf, Mohamed
, Menazea, A. A.
in
631/57
/ 639/925
/ Ablation
/ Anti-Bacterial Agents - chemistry
/ Anti-Bacterial Agents - pharmacology
/ Antibacterial activity
/ Antimicrobial agents
/ E coli
/ Escherichia coli - drug effects
/ Green Chemistry Technology
/ Humanities and Social Sciences
/ Laser ablation
/ Laser Therapy - methods
/ Lasers
/ Metal Nanoparticles - chemistry
/ Microbial Sensitivity Tests
/ multidisciplinary
/ Nanocomposites
/ Nanocomposites - chemistry
/ Nanoparticles
/ Pneumonia
/ Polyvinyl chloride
/ Polyvinyl Chloride - chemistry
/ Polyvinyls - chemistry
/ PVC/PVDF
/ Science
/ Science (multidisciplinary)
/ Silver
/ Silver - chemistry
/ Silver - pharmacology
/ Silver nanoparticles
/ Spectroscopy, Fourier Transform Infrared
/ Spectrum analysis
/ Staphylococcus aureus - drug effects
/ Variance analysis
/ Wound healing
/ Wound Healing - drug effects
2024
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A green approach to improve antibacterial properties of PVC/PVDF film doped by silver nanoparticles via nanosecond laser ablation for wound healing application
Journal Article
A green approach to improve antibacterial properties of PVC/PVDF film doped by silver nanoparticles via nanosecond laser ablation for wound healing application
2024
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Overview
Nanocomposite films of (30% PVC/70% PVDF) blend containing silver nanoparticles were synthesized via pulsed laser ablation route (PLA). Changes in physical characterization of PVC/PVDF blend before and after the incorporation of AgNPs have been studied. FTIR results confirms the interaction between AgNPs and PVC/PVDF. XRD results obtain the existence of peak at 38.42̊ in sample PVC/PVDF/Ag4 which confirm the embedded AgNPs in the high concentration. SEM photos confirm the distribution of silver nanoparticles on the surface of the sample in spherical shape which approved the dispersion of silver nanoparticles in PVC/PVDF blend. The inhibitory zone diameters observed for PVC/PVDF/Ag4 against
Escherichia coli
,
Klebsiella pneumonia
,
Staphylococcus aureus
, and
Bacillus cereus
were recorded as 11 ± 1, 10 ± 1, 15.7 ± 0.6, and 17.7 ± 0.6, respectively. PVC/PVDF/AgNPs nanocomposite film could be suggested for biomedical applications such as wound healing products.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 639/925
/ Ablation
/ Anti-Bacterial Agents - chemistry
/ Anti-Bacterial Agents - pharmacology
/ E coli
/ Escherichia coli - drug effects
/ Humanities and Social Sciences
/ Lasers
/ Metal Nanoparticles - chemistry
/ Polyvinyl Chloride - chemistry
/ PVC/PVDF
/ Science
/ Silver
/ Spectroscopy, Fourier Transform Infrared
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