IRRADIATION AND SILVER DEPOSITION FOR IMPROVEMENT OF NASOPHARYNGEAL AIRWAY MEDICAL DEVICE PROPERTIES

Author:

ABDEL REHEEM A. M.12,ATTA A.1,ABD-ELMONEM MAHMMOUD S.3

Affiliation:

1. Radiation Physics Department, National Center for Radiation, Research and Technology (NCRRT), Atomic Energy Authority (AEA), Nasr City, Cairo, Egypt

2. Accelerators and Ion Sources Department, Nuclear Research Center, Atomic Energy Authority, P.O. Box 13759, Inchas, Cairo, Egypt

3. Analytical Chemistry Department, National Organization for Drug Control and Research (NODCAR), P.O. Box 29, Giza, Egypt

Abstract

The thermal and mechanical properties of nasopharyngeal airway (NPA) samples are improved by irradiation using 4[Formula: see text]keV oxygen and nitrogen ion beams with different ion fluences varying from [Formula: see text] ions/cm2to [Formula: see text] ions/cm2. The thermal stability of NPA medical device increases with increasing nitrogen and oxygen ion fluences. The tensile strength increased from 48[Formula: see text]MPa for unirradiated sample to 74[Formula: see text]MPa for samples irradiated with nitrogen and to 58[Formula: see text]MPa for samples irradiated with oxygen ion, while the elongation at break decreases for irradiated samples. Silver thin films are deposited on NPA medical device samples using 4[Formula: see text]keV argon ion beam. The XRD spectra demonstrated that silver nanoparticles are deposited on NPA medical device substrate. The effects of Ag thin film on gram-positive and gram-negative bacteria are studied.

Publisher

World Scientific Pub Co Pte Lt

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics

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