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Fabrication of Nanofibers by Low-Vo!tage Near-Field Electrospfnning

机译:低vo的纳米纤维制备纳米纤维!Tage近场Electropfnning

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In this paper, non-woven micro-manofibers and wavelike micro-ribbons were produced by a low-voltage near-field electrospinning with working voltage less than 2.8 kV and spinning distance less than 8 mm. A series of experiments were carried out to explore the influence of processing variables on the formation of near-field electrospun nanofibers (polyvinyl pyrrolidone (PVP) as an example), including concentration, humidity and spinning distance. The formation mechanism of helical fibers and wavelike micro-ribbons was also discussed, which can be ascribed to electrical driven bending instability and/or mechanical jet buckling when hitting the collector surface. The results indicate that the morphology of the electrospun fibers can be controlled by experimental variables. And the low-voltage near-field electrospinning is a promising technique which may be used in precision deposition of nanofibers for nanodevices, direct-write nanofabrication, etc.
机译:在本文中,通过低压近场静电纺丝生产非织造的微型纤维和波状微带,工作电压小于2.8kV,旋转距离小于8mm。进行了一系列实验,以探讨加工变量对近场电梭纳米纤维的形成(作为一个例子的聚乙烯吡咯烷酮(PVP))的影响,包括浓度,湿度和纺丝距离。还讨论了螺旋纤维和波状微带的形成机制,当撞击收集器表面时,可以归因于电驱动的弯曲不稳定和/或机械喷射弯曲。结果表明,电纺纤维的形态可以通过实验变量控制。低压近场静电纺丝是一种有希望的技术,可用于纳米纤维的纳米纤维,直接写入纳米制型等。

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