首页> 外文期刊>Journal of Colloid and Interface Science >A novel multinozzle electrospinning process for preparing superhydrophobic PS films with controllable bead-on-string/microfiber morphology
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A novel multinozzle electrospinning process for preparing superhydrophobic PS films with controllable bead-on-string/microfiber morphology

机译:一种制备可控串珠/微纤维形态超疏水性PS膜的新型多喷嘴静电纺丝工艺

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摘要

Superhydrophobic polystyrene (PS) surfaces with mechanical integrity were manufactured by electrospinning in this work. We first report a novel strategy here to combine bead-on-string fibers from 4% PS solution and micro-sized fibers from 20% PS solution homogeneously in one electrospinning step by multinozzle electrospinning. The superhydrophobicity of electrospun sheet can be achieved by the presence of bead-on-string fibers, while micro-sized PS fibers are responsible for the improvement of mechanical property of electrospun mat due to their elastic and flexible behavior. The distinctive design of our multinozzle electrospinning setup places two nozzles in separate electrical fields which guarantee that fibers with different structures are mixed homogeneously. We investigate the relationship between the mass ratio of fibers from two types of solutions and the CA of electrospun mat, the effect of mass ratio to the mechanical property of electrospun mat can also be observed. The result shows that CA value of PS surface merely comprised of bead-on-string fibers could reach up to 154.65°. As the content of microfibers increased, the value of CA decreased, ranging from 153.66° to 145.94°, but the tensile strength of composite mat was enhanced from 0.50. MPa to 1.22. MPa correspondingly which is beneficial to put the mats into practice.
机译:在这项工作中,通过静电纺丝制造了具有机械完整性的超疏水聚苯乙烯(PS)表面。我们首先在这里报告一种新颖的策略,该方法通过多喷嘴静电纺丝在一个静电纺丝步骤中将4%PS溶液中的串珠纤维和20%PS溶液中的超细纤维均匀地结合在一起。电纺片材的超疏水性可通过存在串珠纤维来实现,而超细PS纤维则因其弹性和柔韧性而负责改善电纺垫的机械性能。我们的多喷嘴静电纺丝装置的独特设计将两个喷嘴放置在单独的电场中,从而确保具有不同结构的纤维均匀混合。我们研究了两种溶液中纤维的质量比与电纺垫的CA之间的关系,还可以观察到质量比对电纺垫力学性能的影响。结果表明,仅由串珠状纤维组成的PS表面的CA值可达到154.65°。随着超细纤维含量的增加,CA值从153.66°降低到145.94°,但复合垫的拉伸强度从0.50提高。 MPa至1.22。 MPa相应地,这对于将垫子付诸实践是有益的。

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