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Super-hydrophobic surfaces of layer-by-layer structured film-coated electrospun nanofibrous membranes

机译:逐层结构的薄膜包覆电纺纳米纤维膜的超疏水表面

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摘要

We have recently fabricated super-hydrophobic membrane surfaces based on the inspiration of self-cleaning silver ragwort leaves. This biomimetic super-hydrophobic surface was composed of fluoroalkylsilane (FAS)-modified layer-by-layer (LBL) structured film-coated electrospun nanofibrous membranes. The rough fibre surface caused by the electrostatic LBL coating of TiO2 nanoparticles and poly(acrylic acid) (PAA) was used to imitate the rough surface of nanosized grooves along the silver ragwort leaf fibre axis. The results showed that the FAS modification was the key process for increasing the surface hydrophobicity of the fibrous membranes. Additionally, the dependence of the hydrophobicity of the membrane surfaces upon the number of LBL coating bilayers was affected by the membrane surface roughness. Moreover, x-ray photoelectron spectroscopy (XPS) results further indicated that the surface of LBL film-coated fibres absorbed more fluoro groups than the fibre surface without the LBL coating. A (TiO2/PAA) 10 film-coated cellulose acetate nanofibrous membrane with FAS surface modification showed the highest water contact angle of 162. and lowest water-roll angle of 2.
机译:我们最近根据自清洁银艾蒿叶的灵感制作了超疏水膜表面。该仿生超疏水表面由氟烷基硅烷(FAS)改性的逐层(LBL)结构的薄膜包覆电纺纳米纤维膜组成。由TiO2纳米粒子和聚丙烯酸(PAA)的静电LBL涂层引起的粗糙纤维表面被用来模拟沿银艾蒿叶纤维轴的纳米级沟槽的粗糙表面。结果表明,FAS修饰是增加纤维膜表面疏水性的关键过程。另外,膜表面疏水性对LBL涂层双层数的依赖性受膜表面粗糙度影响。而且,X射线光电子能谱法(XPS)的结果进一步表明,与没有LBL涂层的纤维表面相比,LBL膜涂层的纤维表面吸收了更多的氟基团。具有FAS表面改性的(TiO2 / PAA)10薄膜包覆的醋酸纤维素纳米纤维膜显示最高水接触角为162.,最低水滚动角为2。

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