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首页> 外文期刊>Journal of Applied Polymer Science >Effect of different treatments and SiO2/PVDF coatings on morphology and wettability of electrospun polyamide 6 membranes
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Effect of different treatments and SiO2/PVDF coatings on morphology and wettability of electrospun polyamide 6 membranes

机译:不同处理和SiO2 / PVDF涂层对电纺6膜的形态和润湿性的影响

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The electrospun polyamide 6 (PA6) membranes are treated with different methods. The rough surfaces with different protuberances size and the fiber diameter are prepared by wet, dry heat, wet heat, and ethanol treatments under relaxation, and the formation mechanisms are analyzed. A relative stable structure of PA6 membrane is also prepared by ethanol treatment under tension, and its structure is as same as the untreated membrane. The dynamic water contact angles (WCAs) of the treated membranes are measured. The starting WCA of the membrane with wet heat treatment under relaxation is 90.95 degrees, which is larger than those of wet, dry heat, and ethanol treatments under relaxation. The effects of surface morphologies with different treatments on wettability are analyzed. For obtaining hydrophobicity, the membrane with wet heat treatment under relaxation was coated by polyvinylidene fluoride (PVDF). The WCA of the membrane increases to 127.1 degrees after coating. From another point of view, the WCA of the PVDF/treated PA6 membrane is much larger than that of the pure casting PVDF membrane, which means the rough surface of the treated PA6 membrane can improve the hydrophobicity of the PVDF membrane. Furthermore, the membrane is endowed with superhydrophobicity (WCA of 153.5 degrees) after being coated by SiO2/PVDF due to the multilevel structured surface roughness. It is a relative low cost and convenient operation method to prepare the superhydrophobic material. The results provide a novel preparation method of the superhydrophobic material and a treatment method of the electrospun PA6 membrane to obtain a stable structure. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48804.
机译:将电纺聚酰胺6(PA6)膜用不同的方法处理。具有不同突起尺寸和纤维直径的粗糙表面通过湿,干热,湿热和在松弛下进行乙醇处理来制备,分析形成机制。 PA6膜的相对稳定的结构也通过张力下的乙醇处理制备,其结构与未处理的膜同样。测量经处理的膜的动态水接触角(WCA)。在松弛下具有湿热处理的膜的起始WCA是90.95度,比湿,干热和乙醇处理在松弛下大。分析了表面形态与不同治疗对润湿性的影响。为了获得疏水性,通过聚偏二氟乙烯(PVDF)涂覆具有湿热处理的膜的膜。膜的WCA增加到涂层后的127.1度。从另一个角度来看,PVDF /处理的PA6膜的WCA远大于纯铸造PVDF膜的WCA,这意味着处理过的PA6膜的粗糙表面可以改善PVDF膜的疏水性。此外,由于多级结构化表面粗糙度,通过SiO2 / PVDF涂覆后,膜具有超细纤维性(WCA为153.5度)。它是制备超疏水材料的相对低成本和方便的操作方法。结果提供了一种新型制备方法的超疏水材料和电纺PA6膜的处理方法,得到稳定的结构。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,137,48804。

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