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Preparation of RF-(VM-SiO2)n-RF/AM-Cellu Nanocomposites and Use Thereof for the Modification of Glass and Filter Paper Surfaces: Creation of a Glass Thermoresponsive Switching Behavior and an Efficient Separation Paper Membrane

机译:RF-(VM-SiO2)n-RF / AM-Cellu纳米复合材料的制备及其在玻璃和滤纸表面改性中的应用:创建玻璃热响应转换行为和高效的分离纸膜

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摘要

Fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica/alkyl-modified cellulose (AM-Cellu) nanocomposites [RF-(CH2-CHSiO2)n-RF/AM-Cellu; n = 2, 3; RF = CF(CF3)OC3F7] were prepared by the sol-gel reactions of the corresponding oligomer [RF-(CH2-CHSi(OMe)3)n-RF] in the presence of AM-Cellu. The nanocomposites thus obtained were applied to the surface modification of glass to exhibit a highly oleophobic/superhydrophilic characteristic on the modified surface at 20 °C. Interestingly, a temperature dependence of contact angle values of dodecane and water was observed on the modified surface at 20~70 °C, and the dodecane contact angle values were found to decrease with increasing the temperatures from 20 to 70 °C to provide from highly oleophobic to superoleophilic characteristics on the surface. On the other hand, the increase of the water contact angle values was observed with the increase in the temperatures under similar conditions to supply superhydrophilic to superhydrophobic characteristics on the modified surface. The corresponding nanocomposites were also applied to the surface modification of the filter paper under similar conditions to afford a superoleophilic/superhydrophobic characteristic on the surface. It was demonstrated that the modified filter paper is effective for the separation membrane for W/O emulsion to isolate the transparent colorless oil.
机译:氟烷基封端的乙烯基三甲氧基硅烷低聚二氧化硅/烷基改性纤维素(AM-Cellu)纳米复合材料[RF-(CH2-CHSiO2)n-RF / AM-Cellu; n = 2、3;在AM-Cellu存在下,通过相应的低聚物[RF-(CH2-CHSi(OMe)3)n-RF]的溶胶-凝胶反应制备RF = CF(CF3)OC3F7。将由此获得的纳米复合材料应用于玻璃的表面改性,以在20℃下在改性表面上显示出高度疏油/超亲水的特性。有趣的是,在20〜70°C的改性表面上观察到十二烷与水的接触角值与温度的相关性,发现十二烷的接触角值会随着温度从20°C升高到70°C而降低,以提供较高的温度。表面具有疏油性至超亲油性。另一方面,在相似条件下,随着温度的升高,观察到水接触角值的增加,以在改性表面上提供超亲水至超疏水特性。在相似的条件下,还将相应的纳米复合材料应用于滤纸的表面改性,以在表面上提供超亲油/超疏水特性。结果表明,改性滤纸对W / O乳液分离膜有效,可分离透明无色油。

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