首页> 外文期刊>Colloid and polymer science >Preparation and thermal stability of fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica/poly(acrylonitrile-co-butadiene) nanocomposites-application to the separation of oil and water
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Preparation and thermal stability of fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica/poly(acrylonitrile-co-butadiene) nanocomposites-application to the separation of oil and water

机译:氟烷基封端的乙烯基三甲氧基硅烷低聚二氧化硅/聚(丙烯腈-共-丁二烯)纳米复合材料的制备和热稳定性-在油水分离中的应用

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摘要

Fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica nanocomposites-encapsulated poly(acrylonitrile-co-butadiene) (NBR) [R-F-(VM-SiO2) (n) -R-F/NBR] were prepared by the sol-gel reactions of the corresponding oligomer [R-F-(VM) (n) -R-F] in the presence of NBR under alkaline conditions. Interestingly, it was demonstrated that these obtained fluorinated nanocomposites can afford no weight loss corresponding to the contents of NBR in the composites even after calcination at 800 A degrees C. On the other hand, the nanocomposites, which were prepared under the cross-linking conditions at 150 A degrees C for 30 min by using NBR containing zinc oxide and sulfur (S-8) as the cure activator and the cross-linker, respectively, were found to exhibit a clear weight loss corresponding to the contents of the NBR after calcination at 800 A degrees C. The fluoroalkyl end-capped oligomeric silica nanocomposites-encapsulated the cross-linked NBR were applied to the surface modification of glass to supply the superoleophilic/superhydrophobic characteristic on the surface. The nanocomposites possessing such superoleophilic/superhydrophobic characteristic were applied to the packing material for the column chromatography to separate not only the mixture of oil and water but also the W/O emulsion. In contrast, the nanocomposites, which were prepared under no cross-linking conditions, were not applicable to the packing materials for the separation of these mixtures due to the oleophilic characteristic of the encapsulated NBR in the nanocomposite cores.
机译:通过相应低聚物的溶胶-凝胶反应制备氟烷基端基封端的乙烯基三甲氧基硅烷低聚二氧化硅纳米复合物包裹的聚(丙烯腈-共丁二烯)[RF-(VM-SiO2)(n)-RF / NBR]。在碱性条件下在NBR存在下[RF-(VM)(n)-RF]。有趣的是,已证明这些所得的氟化纳米复合材料即使在800 A的温度下煅烧后也不会产生对应于复合材料中NBR含量的重量损失。另一方面,在交联条件下制备的纳米复合材料通过分别使用含氧化锌和硫(S-8)的NBR作为固化活化剂和交联剂在150 A的温度下保持30分钟,发现明显的失重与煅烧后NBR的含量相对应在800 A的温度下,将包裹有交联NBR的氟烷基封端的低聚二氧化硅纳米复合材料应用于玻璃的表面改性,以在表面提供超亲油/超疏水特性。将具有这种超亲油/超疏水特性的纳米复合材料应用于柱色谱的填充材料,以分离油和水的混合物以及W / O乳液。相反,由于在纳米复合材料核中包封的NBR的亲油特性,在无交联条件下制备的纳米复合材料不适用于这些混合物的分离包装材料。

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