静电纺丝氟化聚合物:工艺和应用的最新进展

IF 11.1 2区 化学 Q1 POLYMER SCIENCE
P. Kianfar, R. Bongiovanni, B. Améduri, A. Vitale
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引用次数: 17

摘要

静电纺丝是一种独特而通用的技术,可以从聚合物溶液或熔体中生产出精细的亚微米纤维和纳米纤维膜。在过去十年中,氟化聚合物(特别是聚偏氟乙烯、PVDF、VDF共聚物和聚四氟乙烯)在静电纺丝工艺中引起了极大的注意。含氟聚合物是一种特殊的材料,具有优异的性能,如高耐化学性、高热稳定性、低表面能和电活性。有趣的是,静电纺丝可以进一步最大化其性能,从而可以制造先进而迷人的纳米结构材料。电纺含氟聚合物在过滤、环境和能源领域(如锂离子电池)、化学和生物传感、电活性应用、超疏水涂层、纺织和运动服装以及生物医学应用等几个领域显示出巨大的应用潜力。本文综述了含氟聚合物在静电纺丝中的应用进展,介绍了纤维材料的制备工艺、性能及其在几个领域的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrospinning of Fluorinated Polymers: Current State of the Art on Processes and Applications
Abstract Electrospinning is a unique and versatile technique to produce fine submicrometric fibers and nanofibrous membranes from polymer solution or melt. In the last decade, fluorinated polymers (particularly polyvinylidene fluoride, PVDF, VDF copolymers and polytetrafluoroethylene, PTFE) have attracted significant attention in electrospinning processes. Fluoropolymers are extraordinary specialty materials characterized by outstanding properties, such as high chemical resistance, high thermostability, low surface energy, and electroactivity. Interestingly, electrospinning can further maximize their properties, thus allowing to fabricate advanced and fascinating nanostructured materials. Electrospun fluoropolymers show a tremendous potential for exciting applications in several areas, from filtration to environmental and energy fields (e.g. Li-ion batteries), chemical and biological sensing, electroactive applications, superhydrophobic coatings, textile and sport wear, and biomedical applications. This review presents the recent advances in the use of the wide family of fluoropolymers in electrospinning, describing the processes for the preparation of the fibrous materials, their properties, and their applications in several fields.
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来源期刊
Polymer Reviews
Polymer Reviews 工程技术-高分子科学
CiteScore
24.80
自引率
0.80%
发文量
21
审稿时长
6 months
期刊介绍: Polymer Reviews is a reputable publication that focuses on timely issues within the field of macromolecular science and engineering. The journal features high-quality reviews that have been specifically curated by experts in the field. Topics of particular importance include biomedical applications, organic electronics and photonics, nanostructures, micro- and nano-fabrication, biological molecules (such as DNA, proteins, and carbohydrates), polymers for renewable energy and environmental applications, and interdisciplinary intersections involving polymers. The articles in Polymer Reviews fall into two main categories. Some articles offer comprehensive and expansive overviews of a particular subject, while others zero in on the author's own research and situate it within the broader scientific landscape. In both types of articles, the aim is to provide readers with valuable insights and advancements in the field of macromolecular science and engineering.
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