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A simple cost-effective and eco-friendly wet chemical process for the fabrication of superhydrophobic cotton fabrics

机译:一种简单的经济高效且环保的湿化学工艺,用于制造超疏水棉织物

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摘要

Superhydrophobic surfaces were created on hydrophilic cotton fabrics by a simple wet chemical process. The fabric was immersed in a colloidal suspension of zinc hydroxide followed by subsequent hydrophobization with stearic acid. The wettability of the modified cotton fabric sample was studied by water contact angle (WCA) and water shedding angle (WSA) measurements. The modified cotton fabrics exhibited superhydrophobicity with a WCA of 151° for 8 μL water droplet and a WSA of 5 to 10° for 40 μL water droplet. The superhydrophobic cotton sample was also characterized by field emission scanning electron microscopy (FESEM) and energy dispersive X-ray spectroscopy (EDX). The method is simple, eco-friendly and cost-effective and can be applied to large area of cotton fabric materials. It was shown that superhydrophobicity of the fabric was due to the combined effect of surface roughness imparted by zinc hydroxide and the low surface energy of stearic acid.
机译:通过简单的湿化学工艺在亲水棉织物上产生超疏水表面。将织物浸入氢氧化锌的胶体悬浮液中,随后用硬脂酸疏水化。通过水接触角(WCA)和水脱落角(WSA)测量研究了改性棉织物样品的润湿性。改性棉织物表现出超疏水性,对于8μL水滴,其WCA为151°,对于40μL水滴,其WSA为5至10°。还通过场发射扫描电子显微镜(FESEM)和能量色散X射线光谱(EDX)对超疏水棉样品进行了表征。该方法简单,环保,成本效益高,可用于大面积棉织物材料。结果表明,织物的超疏水性是由于氢氧化锌赋予的表面粗糙度和硬脂酸的低表面能的共同作用。

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