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具有特殊润湿性的仿生电纺微/纳米纤维

Bio-inspired electrospun micro/nanofibers with special wettability.

作者信息

Baji Avinash, Abtahi Mojtaba, Ramakrishna Seeram

出版信息

J Nanosci Nanotechnol. 2014 Jul;14(7):4781-98. doi: 10.1166/jnn.2014.8841.

Abstract

Inspired by the extreme wetting states displayed by the natural materials, various techniques have been widely investigated to fabricate superhydrophobic and superhydrophilic surfaces. Electrospinning has gained huge amount of interest as fibers with suitable combination of surface chemistry and surface roughness can be easily obtained. This study provides a comprehensive overview of the progress that has been made on electrospun fibers that display superhydrophobicity, superhydrophilicity or a combination of both. The article discusses various modification techniques that can be implemented to obtain fibers with surface heterogeneity for improving its hydrophobicity or hydrophilicity. Both nanometer size of the fibers and secondary nanoscale structures ensure that the fibers have suitable surface topography to exhibit extreme wetting states. Additionally, for the first time, we critically review and identify the role of intrinsic structures such as crystallinity and chain orientation on the wettability of the fibers. We highlight some new emerging application areas that are being explored using superhydrophobic and superhydrophilic fibers. Further, methods for fabricating smart materials with special wettability are also discussed. Such fibers with special wettability show tremendous promise for water harvesting, unidirectional water collection and oil-water filtration applications.

摘要

受天然材料所呈现的极端润湿状态的启发,人们广泛研究了各种制造超疏水和超亲水表面的技术。静电纺丝因能轻松获得具有合适表面化学性质和表面粗糙度组合的纤维而备受关注。本研究全面概述了在具有超疏水性、超亲水性或两者兼具的静电纺丝纤维方面所取得的进展。文章讨论了各种可用于获得具有表面不均匀性的纤维以改善其疏水性或亲水性的改性技术。纤维的纳米尺寸和二级纳米结构都确保纤维具有合适的表面形貌以呈现极端润湿状态。此外,我们首次批判性地回顾并确定了诸如结晶度和链取向等固有结构对纤维润湿性的作用。我们重点介绍了一些正在利用超疏水和超亲水纤维探索的新兴应用领域。此外,还讨论了制造具有特殊润湿性的智能材料的方法。这种具有特殊润湿性的纤维在集水、单向集水和油水过滤应用方面显示出巨大的潜力。

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