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Fabrication of a silver-ragwort-leaf-like super-hydrophobic microanoporous fibrous mat surface by electrospinning

机译:静电纺丝法制备银艾蒿叶状超疏水微/纳孔纤维毡表面

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摘要

Inspired by the self-cleaning silver ragwort leaf, we have recently fabricated a biomimetic super-hydrophobic fibrous mat surface comprising microanoporous polystyrene (PS) microfibres via electrospinning. The rough surface of the silver ragwort leaf fibres, with nanometre-sized grooves along the fibre axis, was imitated by forming micro- and nanostructured pores on the electrospun fibre surface. The solvent composition ratios of tetrahydrofuran (THF) to N,N-dimethylformamide (DMF) in PS solutions were proved to be the key parameter to affect the fibre surface structures due to the various phase separation speeds of the solvents from PS fibres during electrospinning. The combination of the hierarchical surface roughness inherent in electrospun microfibrous PS mats and the low surface free energy of PS yielded a stable super-hydrophobicity with water contact angles as high as 159.5 deg for a 12 mg water droplet, exceeding that (147 deg) of the silver ragwort leaf. Moreover, the hydrophobicity of the porous PS mat surface was found to increase on increasing the surface roughness of the microfibres.
机译:受自清洁银艾蒿叶的启发,我们最近通过静电纺丝制造了一种仿生的超疏水纤维毡表面,该表面包含微/纳孔聚苯乙烯(PS)微纤维。通过在电纺纤维表面上形成微米和纳米结构的孔,可以模拟银艾蒿叶纤维的粗糙表面,沿着纤维轴具有纳米级的凹槽。 PS溶液中四氢呋喃(THF)与N,N-二甲基甲酰胺(DMF)的溶剂组成比被证明是影响纤维表面结构的关键参数,因为电纺过程中溶剂与PS纤维的相分离速度各不相同。电纺微纤维PS垫固有的分层表面粗糙度与PS的低表面自由能相结合,产生了稳定的超疏水性,对于12 mg水滴,其水接触角高达159.5度,超过了其的(147度)银色的艾蒿叶。此外,发现多孔PS垫表面的疏水性随着微纤维表面粗糙度的增加而增加。

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