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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Fabrication of superhydrophobic cellulose-based materials through a solution-immersion process
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Fabrication of superhydrophobic cellulose-based materials through a solution-immersion process

机译:通过溶液浸渍法制备超疏水纤维素基材料

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An industrial waterproof reagent [(potassium methyl siliconate) (PMS)] was used for fabricating a superhydrophobic surface on a cellulose-based material (cotton fabric or paper) through a solution-immersion method. This method involves a hydrogen bond assembly and a polycondensation process. The silanol, which was formed by a reaction of PMS aqueous solution with CO2, Was assembled on the cellulose molecule surface via hydrogen bond interactions. The polymethylsilsesquioxane coatings were prepared by a polycondensation reaction of the hydroxyl between cellulose and silatiol. The superhydrophobic cellulose materials were characterized by FTIR spectroscopy, thermogravimetry, and surface analysis (XPS, FESEM, AFM, and contact angle measurements). Analytical characterization revealed that nanoscale roughness protuberances uniformly covered the surface, thus transforming the cellulose from superhydrophilic to superhydrophobic with a water contact angle of 157 degrees. The superhydrophobic coatings were satisfactory with regard to both chemical and mechanical durability, and because of the transparency of the coatings the native cotton fabric displayed no changes with regard to either morphology or color. The easy availability of the materials and simplicity of this method render it convenient for mass production.
机译:使用工业防水试剂[(甲基硅酸钾)(PMS)]通过溶液浸渍法在纤维素基材料(棉织物或纸)上制造超疏水表面。该方法涉及氢键组装和缩聚过程。通过PMS水溶液与CO2反应形成的硅烷醇通过氢键相互作用组装在纤维素分子表面上。聚甲基倍半硅氧烷涂层是通过纤维素和硅烷之间的羟基缩聚反应制备的。通过FTIR光谱,热重分析和表面分析(XPS,FESEM,AFM和接触角测量)对超疏水纤维素材料进行了表征。分析特征表明,纳米级粗糙度隆起均匀地覆盖了表面,从而以157度的水接触角将纤维素从超亲水性转变为超疏水性。超疏水涂层在化学和机械耐久性方面均令人满意,并且由于涂层的透明性,天然棉织物在形态或颜色方面均未显示出变化。材料的容易获得和该方法的简单性使其便于大规模生产。

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