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Multi-Jet Electrospinning with Auxiliary Electrode: The Influence of Solution Properties

机译:辅助电极的多喷嘴静电纺丝:溶液性质的影响

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摘要

Multiple jets ejection in electrospinning has been a major approach to achieving a high production rate of ultrafine fibers, also known as nanofibers. This work studies the effect of solution parameters—including dielectric constant, polarity, conductivity and surface tension—on the jet number and jet evolution in the auxiliary electrode electrospinning approach. The results show that it is easier to generate 2–6 jets with short stable jet length (1.7–6.9 mm) under low voltage (5.03–7.13 kV) when solutions have higher dielectric constant (32.2–78.6) and larger surface tension (31.8–41.29 mN/m). The influence of solution properties on stable jet length and the influence of applied voltage to produce multiple jets are discussed in detail. This work provides a new perspective for understanding jet evolution and mass production of nanofibers in electrospinning.
机译:静电纺丝中的多次喷射已经成为实现高生产率的超细纤维(也称为纳米纤维)的主要方法。这项工作研究了溶液参数(包括介电常数,极性,电导率和表面张力)对辅助电极静电纺丝方法中的射流数和射流演化的影响。结果表明,当溶液具有较高的介电常数(32.2–78.6)和较大的表面张力(31.8)时,在低压(5.03–7.13 kV)下更容易生成具有短稳定喷嘴长度(1.7–6.9 mm)的2–6个喷嘴–41.29 mN / m)。详细讨论了溶液性质对稳定射流长度的影响以及施加电压以产生多个射流的影响。这项工作为理解电纺中纳米纤维的射流演变和批量生产提供了新的视角。

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