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Green Electrospinning of Polymer Latexes: A Systematic Study of the Effect of Latex Properties on Fiber Morphology

机译:聚合物胶乳的绿色静电纺丝:对乳胶特性对纤维形态作用影响的系统研究

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摘要

Green electrospinning is a relatively new promising technology in which a polymer (latex) can be spun from an aqueous dispersion with the help of a template polymer. This method is a green, clean and safe technology that is able to spin hydrophobic polymers using water as an electrospinning medium. In this article, a systematic study that investigates the influence of the template polymer molar mass, the total solids content of the initial dispersion and the particle/template ratio is presented. Furthermore, the influence of the surfactant used to stabilize the polymer particles, the surface functionality of the polymer particles and the use of a bimodal particle size distribution on the final fiber morphology is studied for the first time. In green electrospinning, the viscosity of the initial complex blend depends on the amount and molar mass of the template polymer but also on the total solids content of the dispersion to be spun. Thus, both parameters must be carefully taken into account in order to fine-tune the final fiber morphology. Additionally, the particle packing and the surface chemistry of the polymer particles also play an important role in the obtained nanofibers quality.
机译:绿色静电纺丝是一种相对较新的有希望的技术,其中聚合物(胶乳)可以通过在模板聚合物的帮助下从水分散体中旋转。该方法是一种绿色,清洁和安全的技术,可以使用水作为静电纺丝介质旋转疏水性聚合物。在本文中,提出了一种调查模板聚合物摩尔质量的影响的系统研究,呈现了初始分散体的总固体含量和颗粒/模板比。此外,研究了用于稳定聚合物颗粒的表面活性剂,聚合物颗粒的表面官能度和在最终纤维形态上使用双峰粒度分布的影响。在绿色的静电纺丝中,初始复合物共混物的粘度取决于模板聚合物的量和摩尔质量,但也取决于分散体的总固体含量为旋转。因此,必须仔细考虑两个参数,以便微调最终纤维形态。另外,聚合物颗粒的颗粒填料和表面化学也在获得的纳米纤维质量中起重要作用。

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