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Solution electrospinning of particle-polymer composite fibres

机译:颗粒聚合物复合纤维的溶液静电纺丝

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摘要

Electrospinning is a fast, simple way to produce nano/microfibers, resulting in porous mats with a high surface to volume ratio. Another material with high surface to volume ratio is aerogel. A drawback of aerogels is its inherent mechanical weakness. To counteract this, aerogels can be embedded into scaffolds. The formation of a particle/polymer composite results in improved mechanical stability, without compromising the porosity. In the presented study, aerogel and poly(ethylene oxide) are mixed into a solution, and spun to thin fibres. Thereby a porous membrane, on the micro- and nano-scale, is produced. The maximum polymer-silica weight-ratio yielding stable fibres has also been determined. The morphology of the fibres at different weight ratios has been investigated by optical microscopy and scanning electron microscope (SEM). Low aerogel concentrations yield few particles located in polymer fibres, whereas higher amounts resulted in fibres dominated by the aerogel particle diameters. The diameters of these fibres were in the range between 13 um to 41 um. The flowrate dependence of the fibre diameter was evaluated for polymer solutions with high particle contents. The self-supporting abilities of these fibres are discussed. It is concluded that selfsupporting polymer/aerogel composites can be made by electrospinning.
机译:静电纺丝是一种快速,简单的方式来生产纳米/微纤维,导致多孔垫具有高表面积比。具有高表面积与体积比的另一种材料是气凝胶。气凝胶的缺点是其固有的机械弱点。为了抵消这一点,气动凝胶可以嵌入支架中。颗粒/聚合物复合材料的形成导致改善的机械稳定性,而不会损害孔隙率。在所提出的研究中,将气凝胶和聚(环氧乙烷)混合成溶液,并将其纺在薄纤维中。由此,产生多孔膜,在微型和纳米级上产生。还确定了产生稳定纤维的最大聚合物 - 二氧化硅重量。通过光学显微镜和扫描电子显微镜(SEM)研究了不同重量比下纤维的形态。低气凝胶浓度产生少量位于聚合物纤维中的颗粒,而较高的量导致由气凝胶颗粒直径支配的纤维。这些纤维的直径在13μm至41μm之间。对具有高颗粒含量的聚合物溶液评价纤维直径的流动依赖性。讨论了这些纤维的自支撑能力。结论是,可以通过静电纺丝制备自动化聚合物/气凝胶复合材料。

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