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Synthesis of hybrid lamellar silica by liquid crystal templating and silanation

机译:液晶模板硅烷化合成杂化层状二氧化硅

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This paper is focused on the preparation and characterization of different lamellar silica prepared by liquid crystal templating and silanisation. The initial template can be removed and replaced in the interlamellar spaces by different types of silane, being covalently grafted to the solid by reaction with the surface silanols. The lamellar stacking periodicity remains after this modification. The surfactant extraction can lead in significant grafting of isopropanol if the solid is simply refluxed in isopropanol, which have the effect of preserving the periodicity of the lamellar stacking. The surfactant extraction in an Soxhlet equipment avoid this reaction, with the effect of platelets organization collapsing. The lamellar silica studied exhibit great specific surface and combination of meso and microporosity, making them interesting materials for nanocomposite or catalysis applications.
机译:本文着重于通过液晶模板化和硅烷化制备的不同层状二氧化硅的制备和表征。可以除去初始模板,并在层间空间中用不同类型的硅烷替换,然后通过与表面硅烷醇反应将其共价接枝到固体上。修改后仍保留层状堆叠周期。如果将固体简单地在异丙醇中回流,则表面活性剂的提取可导致异丙醇的显着接枝,这具有保持层状堆叠的周期性的作用。索氏萃取设备中表面活性剂的提取避免了该反应,并破坏了血小板的组织。所研究的层状二氧化硅表现出极高的比表面以及介孔和微孔率的组合,使其成为用于纳米复合材料或催化应用的有趣材料。

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