Branched nanofibers for biodegradable facemasks by double bubble electrospinning

M. Ali, Q. Ain, Ji HuanHe
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引用次数: 5

Abstract

Abstract World health organization (WHO) data shows that air pollution kills an estimated seven million people worldwide every year. A nanofiber based biodegradable facemask can keep breath from smoke and other particles suspended in the air. In this study, we propose branched polymeric nanofibers as a biodegradable material for air filters and facemasks. Fibers have been elecrospun using double bubble electrospinning technique. Biodegradable polymers, PVA and PVP were used in our experiment. Two tubes, each filled with one of the polymers, were supplied with air from the bottom to form bubbles of polymer solutions. DC 35-40 kV was used to deposit the fibers on an aluminum foil. Results show that the combination of polymers under specific conditions produced branched fibers with average nanofibers diameter of 495nm. FT-IR results indicate the new trends in the graph of composite nanofibers.
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双泡静电纺丝制备可生物降解面罩的支链纳米纤维
世界卫生组织(WHO)的数据显示,全球每年约有700万人死于空气污染。一种基于纳米纤维的可生物降解面罩可以防止呼吸中的烟雾和其他悬浮在空气中的颗粒。在这项研究中,我们提出支链聚合物纳米纤维作为空气过滤器和口罩的可生物降解材料。采用双泡静电纺丝技术对纤维进行了静电纺丝。我们的实验使用了可生物降解聚合物,PVA和PVP。两根管内分别装满一种聚合物,从底部注入空气,形成聚合物溶液的气泡。使用直流35- 40kv将纤维沉积在铝箔上。结果表明,在特定条件下,聚合物的组合得到了平均直径为495nm的支化纤维。傅里叶变换红外光谱结果显示了复合纳米纤维图的新趋势。
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