Scopus (CiteScore 2022 =3.0, Q3) , ISC
Characterization of nanofibrous scaffolds for nanomedical applications involving poly (methyl methacrylate)/poly (vinyl alcohol)
Characterization of nanofibrous scaffolds for nanomedical applications involving poly (methyl methacrylate)/poly (vinyl alcohol)

Qasim S. Kadhim; Ali L. Alfalluji; Fadhel O. Essa

Volume 5, Issue 8 , August 2023, , Pages 720-728

https://doi.org/10.22034/ecc.2023.379089.1585

Abstract
  Tissue engineering benefits from electrospun scaffolds, particularly as drug carriers and reconstructive materials for orthopedic implants, as well as many other uses obtaining a large ...  Read More
Preparation and study of starch/ collagen/ polycaprolactone nanofiber scaffolds for bone tissue engineering using electrospinning technique
Preparation and study of starch/ collagen/ polycaprolactone nanofiber scaffolds for bone tissue engineering using electrospinning technique

Mohammad Ali Ghavimi; Ramin Negahdari; Amirhossein Bani Shahabadi; Simin Sharifi; Ezatolah Kazeminejad; Shahriar Shahi; Solmaz Maleki Dizaj

Volume 2, Issue 1 , January 2020, , Pages 122-127

https://doi.org/10.33945/SAMI/ECC.2020.1.12

Abstract
  Bone tissue engineering has been a fast growing area recently. It suggests a novel and talented methods for bone regeneration. The aim of the current work is to produce nanofiber scaffolds ...  Read More
Electrospun polystyrene nanofiber adsorbent for solid phase extraction of phenol as its quinoid derivative from aqueous solutions
Electrospun polystyrene nanofiber adsorbent for solid phase extraction of phenol as its quinoid derivative from aqueous solutions

Shahab Shariati; Elnaz Shahpanah; Azam Bolouri; Negar Hashemifard; Fatemeh Shariati

Volume 1, Issue 5 , September and October 2019, , Pages 470-479

https://doi.org/10.33945/SAMI/ECC.2019.5.7

Abstract
  In the present study, polystyrene nanofibers (PS NFs) were synthesized by electrospinning method and used as adsorbents in solid phase extraction of phenol from aqueous solutions. Phenol ...  Read More