Student Research Committee, Tabriz University of Medical Sciences, Tabriz 51664, Iran.
IET Nanobiotechnol. 2014 Jun;8(2):83-92. doi: 10.1049/iet-nbt.2012.0040.
Fibres with diameters less than 1000 nm (or 1 µm) are defined as nanofibres and they can be produced by several processing techniques, particularly by electrospinning (ES) technique. ES technique was invented by Formhals in 1934 that in this the electrical field imposes a uniaxial stretching of a viscoelastic jet derived from the polymer solution to continuously reduce the diameter and leads to formatting nanofibres. It is simple and cost-effectiveness technique for preparation of nanofibres. Electrospinning allows for fabricating polymer fibres with diameters varying from 3 nm to greater than 5 µm and in the past decade due in large part to a higher interest in nanoscale properties and technologies. In synthesis process of nanofibres by ES technique, many factors affect on the synthetic nanofibres properties such as polymer properties, solvent properties, additives, polymer concentration, solution properties and so on. In this study, the authors reviewed basic electrospinning and introduces various polymers for preparation of nanofibres.
直径小于 1000nm(或 1μm)的纤维被定义为纳米纤维,它们可以通过多种加工技术生产,特别是通过静电纺丝(ES)技术。ES 技术由 Formhals 于 1934 年发明,在该技术中,电场对聚合物溶液中得到的粘弹性射流施加单轴拉伸,以不断减小直径,从而形成纳米纤维。这是一种简单且具有成本效益的纳米纤维制备技术。静电纺丝允许制备直径从 3nm 到 5μm 以上的聚合物纤维,在过去十年中,由于对纳米级特性和技术的兴趣增加,这一技术得到了广泛应用。在 ES 技术制备纳米纤维的合成过程中,许多因素会影响合成纳米纤维的性能,如聚合物性能、溶剂性能、添加剂、聚合物浓度、溶液性能等。在这项研究中,作者综述了基本的静电纺丝,并介绍了用于制备纳米纤维的各种聚合物。