首页> 外文期刊>Journal of Sol-Gel Science and Technology >Preparation of morphology-controlled fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica/magnesium oxide nanocomposite particles: development of magnesium oxide nanocomposite particles possessing a water-resistance ability
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Preparation of morphology-controlled fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica/magnesium oxide nanocomposite particles: development of magnesium oxide nanocomposite particles possessing a water-resistance ability

机译:形态学控制的氟代烷基端升乙烯基三甲氧基硅烷低聚二氧化硅/氧化镁纳米复合粒子的制备:氧化镁纳米复合粒子具有耐水能力的氧化镁

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Fluoroalkyl end-capped vinyltrimethoxysilane oligomeric silica nanocomposites-encapsulated magnesium oxide particles [R-F-(CH2-CHSiO3)(n)-R-F/MgO nanocomposites; n=2, 3; R-F=CF3CFOC3F7] were prepared by the sol-gel reactions of the corresponding oligomer [R-F-(CH2CHSi(OMe)(3))(n)-R-F] in the presence of magnesium oxide nanoparticles under alkaline or non-catalytic conditions, respectively. These sol-gel reactions were found to afford the two kinds of morphology-controlled fluorinated nanocomposite particles; that is, the alkaline conditions can supply the spherical fine nanoparticles, and the non-catalytic conditions can afford the linearly arrayed fluorinated oligomeric nanocomposite particles. Interestingly, the linearly arrayed nanocomposites provide a poor water-resistance ability toward their encapsulated magnesium oxide, leading the magnesium hydroxide through the hydrolysis process; however, it was demonstrated that the spherical fine nanoparticles can give a perfect water-resistance ability toward the magnesium oxide in their particle cores under similar conditions. In addition, the spherical fluorinated nanocomposite particles-encapsulated magnesium oxide were applied to the surface modification of PMMA [poly(methyl methacrylate)] film to exhibit the oleophobic characteristic imparted by fluoroalkyl segments in the composites on the modified surface. Magnesium oxide in the nanocomposites can also have a similar surface orientational ability to that of the fluoroalkyl segments in the composites. In contrast, the corresponding linearly arrayed fluorinated nanocomposite particles can give the uniformly dispersibility toward the PMMA film to supply the oleophobic property imparted by longer fluoroalkyl segments in the composites on the surface and even on the reverse side.
机译:氟代烷基端盖乙烯基三甲氧基硅烷低聚二氧化硅纳米复合材料包封氧化镁颗粒[R-F-(CH2-CHSIO3)(N)-R-F / MgO纳米复合材料; n = 2,3;通过相应的低聚物[RF-(CH2CHSI(OME)(3))(3))(N)-RF]在碱性或非催化条件下的氧化镁纳米粒子存在下的溶胶 - 凝胶反应制备。发现这些溶胶 - 凝胶反应提供两种形态控制的氟化纳米复合材料颗粒;也就是说,碱性条件可以提供球形细纳米颗粒,并且非催化条件可提供线性排列的氟化低聚纳米复合颗粒。有趣的是,线性排列的纳米复合材料可提供较差的耐水性朝向其包封的氧化镁,通过水解过程引发氢氧化镁;然而,证明球形细纳米粒子可以在相似条件下给出氧化镁的完美防水能力。此外,将球形氟化纳米复合颗粒包封的氧化镁应用于PMMA [聚(甲基丙烯酸甲酯)]膜的表面改性,以表现在改性表面上复合材料中的氟代烷基链段赋予的疏化特性。纳米复合材料中的氧化镁也可以具有与复合材料中的氟代烷基链段的表面取向能力相似。相反,相应的线性排列的氟化纳米复合粒子可以使朝向PMMA膜均匀分散性,以供应通过在表面上的复合材料上的复合材料中的更长的氟代烷基段赋予的疏油性能,甚至在反面。

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