Synthesis and characterization of polystyrene with embedded silver nanoparticle nanofibers to utilize as antibacterial and wound healing biomaterial

Kandile, Nadia; Mayar Mostafa; Mahmoud K. Mahmoud; Hassan M. Ibrahim;

Abstract


Herein, silver nanoparticles (Ag) embedded in polystyrene (PS) nanofiber composites have been prepared by an
electrospinning technique using N, N-dimethylformamide (DMF) as a solvent and safe reducing agent. Electro spinning of polystyrene (PS) solutions is conducted using different electrospinning parameters such as polymer
concentration in the electrospinning solution; solution feed rate, and electrical field strength. Then silver nano particles (AgNPs) were embedded into PS nanofibers to obtain an AgNPs-PS nanofiber composite as a powerful,
cheap, and nontoxic bioactive material. PS nanofibers and AgNPs-PS nanofibers composite were characterized by
using thermogravimetric analysis (TGA), X-ray diffraction, and scanning electron microscopy (SEM). Also, AgNPs
were characterized by UV-vis spectroscopy, transmission electron microscopy (TEM), and EDX analysis. Results
showed that PS nanofibers were obtained with concentrations ranging from 10–30 wt.% in DMF solvent. Also, an
AgNPs-PS nanofiber composite has been produced from its solutions by using DMF at the optimum value. The
prepared AgNPs have a 21–40 nm particle size and a semi-spherical shape. In addition, the antibacterial activity of
AgNPs-PS nanofibers towards both Gram-positive and Gram-negative bacteria has been increased. Therefore, this
nanocomposite can be used as a powerful bioactive material in biomedical fields.


Other data

Title Synthesis and characterization of polystyrene with embedded silver nanoparticle nanofibers to utilize as antibacterial and wound healing biomaterial
Authors Kandile, Nadia ; Mayar Mostafa; Mahmoud K. Mahmoud; Hassan M. Ibrahim
Keywords Wound healing;Biomaterials antibacterial polystyrene nanofibers;Silver nanoparticles
Issue Date 12-Jan-2022
Publisher Elsevier
Journal Heliyon 
Volume 8
Issue e08772
Start page 1
End page 11
DOI . Contents lists available at ScienceDirect Heliyon journal homepage: www.cell.com/heliyon https://doi.org/10.1016/j.heliyon.2022.e08772

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