Wang Xianfeng, Ding Bin, Sun Gang, Wang Moran, Yu Jianyong
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai 201620, China.
Nanomaterials Research Center, Modern Textile Institute, Donghua University, Shanghai 200051, China.
Prog Mater Sci. 2013 Oct;58(8):1173-1243. doi: 10.1016/j.pmatsci.2013.05.001. Epub 2013 May 26.
Since 2006, a rapid development has been achieved in a subject area, so called electro-spinning/netting (ESN), which comprises the conventional electrospinning process and a unique electro-netting process. Electro-netting overcomes the bottleneck problem of electrospinning technique and provides a versatile method for generating spider-web-like nano-nets with ultrafine fiber diameter less than 20 nm. Nano-nets, supported by the conventional electrospun nanofibers in the nano-fiber/nets (NFN) membranes, exhibit numerious attractive characteristics such as extremely small diameter, high porosity, and Steiner tree network geometry, which make NFN membranes optimal candidates for many significant applications. The progress made during the last few years in the field of ESN is highlighted in this review, with particular emphasis on results obtained in the author's research units. After a brief description of the development of the electrospinning and ESN techniques, several fundamental properties of NFN nanomaterials are addressed. Subsequently, the used polymers and the state-of-the-art strategies for the controllable fabrication of NFN membranes are highlighted in terms of the ESN process. Additionally, we highlight some potential applications associated with the remarkable features of NFN nanostructure. Our discussion is concluded with some personal perspectives on the future development in which this wonderful technique could be pursued.
自2006年以来,一个名为电纺丝/织网(ESN)的学科领域取得了快速发展,它包括传统的电纺丝工艺和独特的电织网工艺。电织网克服了电纺丝技术的瓶颈问题,并提供了一种通用方法来生成纤维直径小于20纳米的蛛网状纳米网。由纳米纤维/网(NFN)膜中的传统电纺纳米纤维支撑的纳米网具有许多吸引人的特性,如直径极小、孔隙率高和具有斯坦纳树网络几何形状,这使得NFN膜成为许多重要应用的理想候选材料。本综述重点介绍了近年来ESN领域取得的进展,特别强调了作者研究单位获得的成果。在简要描述了电纺丝和ESN技术的发展之后,讨论了NFN纳米材料的几个基本特性。随后,从ESN工艺的角度突出介绍了所使用的聚合物以及NFN膜可控制备的最新策略。此外,我们还强调了一些与NFN纳米结构显著特征相关的潜在应用。我们的讨论最后是对未来发展的一些个人观点,在未来发展中可以继续探索这项出色的技术。