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层状单金属氢氧化物/乙二醇作为一类新型杂化材料。

Layered single-metal hydroxide/ethylene glycol as a new class of hybrid material.

作者信息

Kasai Asayo, Fujihara Shinobu

机构信息

Department of Applied Chemistry, Faculty of Science and Technology, Keio University, Kohoku-ku, Yokohama, Japan.

出版信息

Inorg Chem. 2006 Jan 9;45(1):415-8. doi: 10.1021/ic051528d.

Abstract

Neutral ethylene glycol (EG) molecules have been intercalated into zinc hydroxide layers to produce a new hybrid material in which only one kind of metal ion is included. Initially, layered basic zinc acetate (LBZA, Zn(5)(OH)(8)(CH(3)COO)(2).2H(2)O) was prepared from a methanolic zinc acetate dihydrate solution. The immersion of LBZA in EG resulted in its intercalation, which was accompanied by an interlayer expansion of 7.12 A, as revealed by X-ray diffractometry. A Fourier transform infrared spectroscopic study indicated that the new compound contained both the acetate groups and the EG molecules. Together with thermogravimetry-differential thermal analysis, a composition of the new compound was estimated to be Zn(5)(OH)(8)(CH(3)COO)(2)(HOC(2)H(4)OH)(2).2H(2)O. The EG intercalation was found to increase the dehydration temperature of the zinc hydroxide layers from 130 to 180 degrees C. So the thermally stable material is then promising as a new class of precursors in creating organic-inorganic nanocomposites.

摘要

中性乙二醇(EG)分子已插入氢氧化锌层中,以制备一种仅包含一种金属离子的新型杂化材料。最初,由甲醇二水合醋酸锌溶液制备层状碱性醋酸锌(LBZA,Zn(5)(OH)(8)(CH(3)COO)(2).2H(2)O)。将LBZA浸入EG中导致其插入,如X射线衍射法所示,伴随有7.12 Å的层间膨胀。傅里叶变换红外光谱研究表明,新化合物同时含有醋酸根和EG分子。结合热重-差热分析,估计新化合物的组成为Zn(5)(OH)(8)(CH(3)COO)(2)(HOC(2)H(4)OH)(2).2H(2)O。发现EG插入使氢氧化锌层的脱水温度从130℃提高到180℃。因此,这种热稳定材料有望成为制备有机-无机纳米复合材料的一类新型前驱体。

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