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Electrospun Environment Remediation Nanofibers Using Unspinnable Liquids as the Sheath Fluids: A Review

机译:使用不可纺液体作为鞘液的电纺环境修复纳米纤维:综述

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摘要

Electrospinning, as a promising platform in multidisciplinary engineering over the past two decades, has overcome major challenges and has achieved remarkable breakthroughs in a wide variety of fields such as energy, environmental, and pharmaceutics. However, as a facile and cost-effective approach, its capability of creating nanofibers is still strongly limited by the numbers of treatable fluids. Most recently, more and more efforts have been spent on the treatments of liquids without electrospinnability using multifluid working processes. These unspinnable liquids, although have no electrospinnability themselves, can be converted into nanofibers when they are electrospun with an electrospinnable fluid. Among all sorts of multifluid electrospinning methods, coaxial electrospinning is the most fundamental one. In this review, the principle of modified coaxial electrospinning, in which unspinnable liquids are explored as the sheath working fluids, is introduced. Meanwhile, several typical examples are summarized, in which electrospun nanofibers aimed for the environment remediation were prepared using the modified coaxial electrospinning. Based on the exploration of unspinnable liquids, the present review opens a way for generating complex functional nanostructures from other kinds of multifluid electrospinning methods.
机译:在过去的二十年中,静电纺丝作为多学科工程学中的一个有前途的平台,已经克服了重大挑战,并在能源,环境和制药等众多领域取得了令人瞩目的突破。但是,作为一种简便且具有成本效益的方法,其制造纳米纤维的能力仍然受到可处理流体数量的强烈限制。最近,越来越多的努力已经花费在使用多流体加工工艺处理没有电纺性的液体上。这些不可纺的液体虽然本身没有静电纺性,但是当用可静电纺的液体进行电纺时,可以将其转化为纳米纤维。在各种多流体静电纺丝方法中,同轴静电纺丝是最基本的方法。在这篇综述中,介绍了改进的同轴电纺丝的原理,其中探索了不可纺液体作为护套工作流体。同时,总结了几个典型的例子,其中使用改性的同轴电纺丝制备了用于环境修复的电纺纳米纤维。在对不可纺液体的探索的基础上,本综述开辟了一种从其他种类的多流体电纺方法中产生复杂功能纳米结构的方法。

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