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Sustainable electrospinning of nanoscale fibres

机译:纳米透视纤维的可持续静电纺丝

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Electrospinning is an effective technology for the preparation of nano and micro scale fibres for diverse application in oil recovery, medical devices, and filters. It is achieved by injecting a charged solution of polymeric material through a needle into a region of high electric field. Under these conditions, the expelled jet follows a chaotic, whip-like trajectory towards a grounded collection plate. At low polymer concentrations, the high forces experienced by the jet prior to becoming grounded on the collection plate, result in the formation of undesirable discrete droplets of material, rather than fibres. At higher concentrations, above the critical entanglement limit for the polymer, the polymer chains are stretched and orientated whilst the solvent rapidly evaporates, delivering high aspect ratio fibres. The resulting mesh of overlapping fibres frequently has useful properties such as high surface area and porosity, which has led to their investigation for a range of applications including filtration membranes and tissue scaffolds. One of the major challenges in the development of electrospinning as a manufacturing technology is the use of organic solvents. Typically, fibres are spun from relatively dilute solutions containing 95% solvent. It is clear that systems which use water as a solvent offer many advantages in terms of safety, cost and sustainability. In this work we optimise the conditions for effectively preparing nano/micro fibres of polyethylene oxide from aqueous solutions. We contrast the fibres produced with those prepared using volatile organic solvents.
机译:静电纺丝是制备纳米和微观纤维的有效技术,用于在储存,医疗装置和过滤器中多样化应用。通过将聚合物材料的带电溶液通过针注入到高电场区域中来实现的。在这些条件下,排出的喷射沿着混乱,鞭状轨迹朝向接地的收集板。在低聚合物浓度下,射流经历的高力在成立板上接地之前,导致形成不希望的离散的材料液滴,而不是纤维。在较高的浓度下,高于聚合物的临界缠结限制,在溶剂迅速蒸发的同时拉伸并取向,递送高纵横比纤维。与重叠纤维的所得纤维通常具有有用的性质,例如高表面积和孔隙率,这导致其对一系列应用的研究,包括过滤膜和组织支架。作为制造技术的静电纺丝开发的主要挑战之一是使用有机溶剂。通常,纤维从含有95%溶剂的相对稀释的溶液中旋转。很明显,在安全性,成本和可持续性方面,使用水作为溶剂的系统提供了许多优势。在这项工作中,我们优化了从水溶液中有效地制备聚环氧乙烷的纳米/微纤维的条件。我们对比使用挥发性有机溶剂制备的那些产生的纤维。

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