首页> 外文期刊>Polymers >Preparation of Fluoroalkyl End-Capped Vinyltrimethoxysilane Oligomeric Silica Nanocomposites Containing Gluconamide Units Possessing Highly Oleophobic/Superhydrophobic, Highly Oleophobic/Superhydrophilic, and Superoleophilic/Superhydrophobic Characteristics on the Modified Surfaces
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Preparation of Fluoroalkyl End-Capped Vinyltrimethoxysilane Oligomeric Silica Nanocomposites Containing Gluconamide Units Possessing Highly Oleophobic/Superhydrophobic, Highly Oleophobic/Superhydrophilic, and Superoleophilic/Superhydrophobic Characteristics on the Modified Surfaces

机译:含葡糖酰胺单元的氟烷基末端封端的乙烯基三甲氧基硅烷低聚二氧化硅纳米复合材料,在改性表面上具有高疏油/超疏水,高疏油/超亲水和超疏油/超疏水特性

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Fluoroalkyl end-capped vinyltrimethoxysilane oligomer [R F -(CH 2 -CHSi(OMe) 3 ) n -R F (R F -(VM) n -R F )] undergoes the sol-gel reaction in the presence of N -(3-triethoxysilylpropyl)gluconamide [Glu-Si(OEt) 3 ] under alkaline conditions to afford the corresponding fluorinated oligomeric silica nanocomposites containing gluconamide units [R F -(VM-SiO 3/2 ) n -R F /Glu-SiO 3/2 ]. These obtained nanocomposites were applied to the surface modification of glass to provide the unique wettability characteristics such as highly oleophobic/superhydrophobic and highly oleophobic/superhydrophilic on the modified surfaces under a variety of conditions. Such a highly oleophobic/superhydrophobic characteristic was also observed on the modified PET (polyethylene terephthalate) fabric swatch, which was prepared under similar conditions, and this modified PET fabric swatch was applied to the separation membrane for the separation of the mixture of fluorocarbon oil and hydrocarbon oil. The R F -(VM-SiO 3/2 ) n -R F /Glu-SiO 3/2 nanocomposites, which were prepared under lower feed amounts of basic catalyst (ammonia), were found to cause gelation in water. Interestingly, it was demonstrated that these gelling nanocomposites are also applied to the surface modification of the PET fabric swatch to give a highly oleophobic/superhydrophobic characteristic on the surface. On the other hand, the modified glass surfaces treated with the corresponding nanocomposite possessing no gelling ability were found to supply the usual hydrophobic characteristic with a highly oleophobic property. More interestingly, the wettability change on the modified PET fabric swatch from highly oleophobic to superoleophilic was observed, and remained superhydrophobic after immersing the modified PET fabric swatch into water.
机译:氟烷基封端的乙烯基三甲氧基硅烷低聚物[RF-(CH 2 -CHSi(OMe)3)n -RF(RF-(VM)n -RF)]在N-(3-三乙氧基甲硅烷基丙基)存在下进行溶胶-凝胶反应葡糖酰胺[Glu-Si(OEt)3]在碱性条件下得到相应的含葡糖酰胺单元[RF-(VM-SiO 3/2)n -RF / Glu-SiO 3/2]的氟化低聚二氧化硅纳米复合物。将这些获得的纳米复合材料应用于玻璃的表面改性,以在各种条件下在改性表面上提供独特的润湿性,例如高度疏油/超疏水和高度疏油/超亲水。在类似条件下制备的改性PET(聚对苯二甲酸乙二酯)布样上也观察到了这种高度疏油/超疏水特性,并将该改性PET布样用于分离膜以分离碳氟化合物油和氟碳油的混合物。烃油。发现在较低进料量的碱性催化剂(氨)下制备的R F-(VM-SiO 3/2)n -R F / Glu-SiO 3/2纳米复合材料在水中引起凝胶化。有趣的是,已证明这些胶凝纳米复合材料也用于PET织物样品的表面改性,以在表面上提供高度疏油/超疏水特性。另一方面,发现用没有胶凝能力的相应的纳米复合材料处理的改性玻璃表面提供了通常的疏水性和高疏油性。更有趣的是,观察到改性PET织物样品的润湿性从高疏油性变为超亲油性,并且在将改性PET织物样品浸入水中后仍保持超疏水性。

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