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乙二醇嵌入氢氧化钇层状材料。

Intercalation of ethylene glycol into yttrium hydroxide layered materials.

机构信息

Department of Chemical Engineering, University of Virginia, 102 Engineers' Way, P.O. Box 400741, Charlottesville, Virginia 22904-4741, USA.

出版信息

Inorg Chem. 2010 Apr 19;49(8):3888-95. doi: 10.1021/ic1000478.

Abstract

Intercalation of ethylene glycol into layered yttrium hydroxide containing nitrate counterions was accomplished by heating the reagents in a methanol solution of sodium methoxide under autogenous pressure at 413 K for 20 h. The resulting crystalline material had an expanded interlayer distance of 10.96 A, confirming the intercalation of an ethylene glycol derived species. Characterization of the material by FT-IR spectroscopy, thermogravimetric analysis, and the catalytic transesterification of tributyrin with methanol was consistent with direct bonding of ethylene glycolate anions (O(2)C(2)H(5)(-)) to the yttrium hydroxide layers, forming Y-O-C bonds. The layers of the material are proposed to be held together by H-bonding between the hydroxyls of grafted ethylene glycol molecules attached to adjacent layers. Glycerol can also be intercalated into yttrium hydroxide layered materials by a similar method.

摘要

将乙二醇插入含有硝酸根阴离子的层状氢氧化钇中,是通过在 413K 下将试剂在甲醇和甲醇钠的溶液中加热并在自生压力下反应 20 小时来实现的。所得结晶材料的层间距扩大到 10.96Å,证实了乙二醇衍生物种的插入。通过傅里叶变换红外光谱、热重分析和三丁酸甘油酯与甲醇的催化酯交换反应对材料进行的表征与乙二醇酸根阴离子(O(2)C(2)H(5)(-))直接键合到氢氧化钇层上形成 Y-O-C 键的情况一致,形成 Y-O-C 键。该材料的层间通过相邻层上接枝的乙二醇分子的羟基之间的氢键相互作用而保持在一起。甘油也可以通过类似的方法插入到氢氧化钇层状材料中。

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