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Intercalation of alkylamines and water into kaolinite with methanol kaolinite as an intermediate

机译:以甲醇高岭石为中间体,将烷基胺和水嵌入高岭石

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Alkykamines and water were intercalated between the layers of kaolinite by utilizing a kaolinite/methanol intercalation compound as an intermediate. A kaolinite/methanol intercalation compound was synthesized by guest displacement reaction of a kaolinite/Nmethylfor- mamide intercalation compound with methanol. The basal spacing increased up to 5.75 nm when octadecylamine was used. It increased linearly with the length of alkyl chains by 0.255 nm per carbon atom, suggesting that the alkylamine molecules in the interlayer space of kaolinite take a bilayer arrangement with their alkyl chains almost perpendicular to the layers of kaolinite. Water molecules were also intercalated into kaolinite by displacement of methanol. The basal spacing of the product was l.00 nm under wet conditions and 0.85 nm after drying. By using hydrated kaolinite as an intermediate, pyridine molecules were intercalated into kaolinite, thus, the hydrated kaolinite also shows the ability as an intermediate for displacement reactions. These results demonstrate that kaolinite has higher intercalation ability for a wider variety of guest species than previously accepted if appropriate intermediates are used.
机译:通过使用高岭石/甲醇插层化合物作为中间体,将烷基胺和水插在高岭石层之间。通过高岭石/ N-甲基甲酰胺插层化合物与甲醇的客体置换反应合成高岭石/甲醇插层化合物。当使用十八烷基胺时,基础间距增加至5.75nm。它与烷基链的长度线性增加,每个碳原子增加0.255 nm,这表明高岭石层间空间中的烷基胺分子呈双层排列,其烷基链几乎垂直于高岭石层。通过置换甲醇,水分子也插入高岭石中。产物的基本间距在潮湿条件下为1.00 nm,在干燥后为0.85 nm。通过使用水合高岭石作为中间体,吡啶分子插入到高岭石中,因此,水合高岭石还显示出了作为置换反应中间体的能力。这些结果表明,如果使用适当的中间体,则高岭石对更大范围的客体物种具有更高的插层能力。

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