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聚电解质溶液静电纺丝中的电荷传输。

Charge transport in electrospinning of polyelectrolyte solutions.

作者信息

Martin Patrick, Zussman Eyal

机构信息

NanoEngineering Group, Faculty of Mechanical Engineering Technion - Israel Institute of Technology, Haifa, Israel.

出版信息

Soft Matter. 2024 Jul 17;20(28):5572-5582. doi: 10.1039/d4sm00605d.

DOI:10.1039/d4sm00605d
PMID:38966871
Abstract

This study elucidates the electrical charge transport during electrospinning of weak polyelectrolyte (poly(acrylic acid) (PAA)) solutions by employing current emission measurements. With pH variation, the PAA ionization degree could be controlled from uncharged at low pH to weakly charged at intermediate solution pH. Electrospinning neutral poly(vinylpyrrolidone) (PVP) as a reference polymer solution confirmed established current-flow rate scaling relationships as shown by De La Mora and Loscertales (1994), ∼ (), independent of the applied electric field polarity, where = 0.5, is the conductivity, is the surface tension, is the flow rate, and is the current. Similarly, the uncharged PAA did not display any polarity dependence, yet ≈ 0.8. Negatively charged PAA, however, showed a marked deviation in the current-flow rate behavior, which was affected by the applied electric field polarity. In the case of negative polarity, = 0.99, whereas for a positive polarity = 0.68. Similarly, the voltage required for stable cone-jet electrospinning of charged PAA was significantly higher in the negative polarity configuration for all tested flow rates (300-1600 μL h). As opposed to merely surface charges typically considered when electrospinning leaky dielectric fluids, as suggested by Melcher and Taylor (1969), our results suggest that the measured current is also affected by volumetric charges from charged PAA in the bulk of the jet. The proposed additional charge transport might affect the orientational order within PE-based nanofibers and their diameter.

摘要

本研究通过电流发射测量阐明了弱聚电解质(聚丙烯酸(PAA))溶液静电纺丝过程中的电荷传输。随着pH值的变化,PAA的电离度可以从低pH值下的不带电状态控制到中等溶液pH值下的弱带电状态。静电纺丝中性聚(乙烯基吡咯烷酮)(PVP)作为参考聚合物溶液,证实了已确立的电流-流速标度关系,如德拉莫拉和洛塞尔塔莱斯(1994年)所示,∼(),与所施加电场的极性无关,其中 = 0.5,是电导率,是表面张力,是流速,是电流。同样,不带电的PAA没有显示出任何极性依赖性,然而≈0.8。然而,带负电的PAA在电流-流速行为上表现出明显偏差,这受到所施加电场极性的影响。在负极性情况下, = 0.99,而在正极性情况下 = 0.68。同样,对于所有测试流速(300 - 1600 μL h),带电荷PAA进行稳定锥-射流静电纺丝所需的电压在负极性配置中显著更高。与梅尔彻和泰勒(1969年)所建议的静电纺丝漏电介质流体时通常仅考虑表面电荷不同,我们的结果表明,所测量的电流也受到射流主体中带电荷PAA的体电荷影响。所提出的额外电荷传输可能会影响基于PE的纳米纤维内的取向顺序及其直径。

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