首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Atmospheric plasma treatment of pre-electrospinning polymer solution: A feasible method to improve electrospinnability
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Atmospheric plasma treatment of pre-electrospinning polymer solution: A feasible method to improve electrospinnability

机译:静电纺丝前聚合物溶液的大气等离子体处理:一种提高静电纺丝性的可行方法

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摘要

The electrospinnability of polyethylene oxide (PEO) was manipulated by atmospheric plasma treatment of pre-electrospinning solutions. Conductivity, viscosity, and surface tension of PEO solutions increased after plasma treatment, and the plasma effect remained longer when the solution concentrate increased. Both untreated and treated solutions were then electrospun, and the morphology of the resultant nanofibers was observed by SEM. Atmospheric plasma treatment improved the electrospinnability of PEO solutions and led to less beads and finer diameter distribution in the resultant nanofibers. Additionally, plasma treatment of the pre-electrospinning solutions affected the crystal structure of resultant nanofibers. These results suggest that atmospheric plasma treatment is a feasible approach to improve the electrospinnability of polymer solutions and can used to control the structure of electrospun nanofibers.
机译:聚环氧乙烷(PEO)的电纺丝性通过电纺丝前溶液的大气等离子体处理来控制。等离子体处理后,PEO溶液的电导率,粘度和表面张力增加,而当溶液浓度增加时,等离子体效应则保持更长的时间。然后将未经处理的溶液和经处理的溶液都进行电纺丝,并通过SEM观察所得纳米纤维的形态。大气等离子体处理改善了PEO溶液的电纺丝性,并导致生成的纳米纤维中的珠粒更少,直径分布更细。另外,预静电纺丝溶液的等离子体处理影响了所得纳米纤维的晶体结构。这些结果表明,大气等离子体处理是提高聚合物溶液电纺丝性的可行方法,可用于控制电纺纳米纤维的结构。

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