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Fabrication of Robust Water-Repellent Technology on Cotton Fabric via Reaction of Thiol-ene Click Chemistry

机译:通过Thiol-ene的反应在棉织物上制造鲁棒防水技术

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A robust superhydrophobic fabric coating was fabricated on cotton fabric under UV light, which was achieved by convenient surface modification with mercaptopropyltriethoxysilane, tetramethyltetravinylcyclotetrasiloxane, and octadecyl mercaptan. The modification of cotton fabric with 3-mercaptopropyltriethoxysilane introduces reactive mercapto groups, after which 2,4,6,8-tetramethyltetravinylcyclotetrasiloxane reacts with mercapto groups, and octadecyl mercaptan provides microscale roughness. The nonpolar carbon chains of thiol cause the cotton to have a low surface energy. As reported, the combination of microscale roughness with low surface energy has a superhydrophobic effect on cotton, which leads to a high contact angle of 161.8° and sliding angle of 8°. Infrared spectroscopy, XPS, and SEM tests were used to characterize the chemical structure and morphological changes of the surface of cotton fabric before and after click reaction. The fabric after click reaction exhibited an oil–water mixture separation ability owing to its superhydrophobicity. Thus, the finished fabric could be used in the oil–water separation field. Importantly, the superhydrophobic textile displays resistance to laundering, mechanical abrasion, strong acidic and alkaline environments, and UV irradiation. We hope that this study can broaden the real-life applications of cotton fabric.
机译:在UV光下在棉织物上制造了一种稳健的超疏水织物涂层,其通过方便的表面改性与巯基丙基三氧基硅烷,四甲基四烷基四环四酮化硅氧烷和十八烷基硫醇的表面改性来实现。用3-巯基丙基三乙氧基硅烷改性棉织物引入反应性巯基,之后,其中2,4,6,8-四甲基四十四烷基环四硅氧烷与巯基反应,二加甲硫醇提供微尺度粗糙度。硫醇的非极性碳链使棉具有低表面能。如图所示,微观粗糙度与低表面能的组合对棉具有超疏水效应,这导致161.8°的高接触角和8°的滑动角度。红外光谱,XPS和SEM试验用于表征棉布表面的化学结构和单击反应后表面的形态变化。点击反应后的织物表现出由于其超疏水性的​​油水混合物分离能力。因此,成品织物可用于油水分离场。重要的是,超疏水性纺织品显示出抗洗涤,机械磨损,强酸性和碱性环境以及紫外线照射。我们希望本研究能够拓宽棉花面料的现实寿命应用。

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