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由铅、镧和镉的环己烯及环己烷二羧酸盐形成的层状和三维杂化化合物。

Lamellar and three-dimensional hybrid compounds formed by cyclohexene- and cyclohexanedicarboxylates of Pb, La, and Cd.

作者信息

Rao K Prabhakara, Thirumurugan A, Rao C N R

机构信息

Chemistry and Physics of Materials Unit and CSIR Centre of Excellence in Chemistry, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur P. O., Bangalore 560064, India.

出版信息

Chemistry. 2007;13(11):3193-201. doi: 10.1002/chem.200600966.

Abstract

To establish factors that determine the formation of three-dimensional hybrid structures of metal dicarboxylates involving metal-oxygen-metal linkages, we have investigated metal dicarboxylates derived from 1,2-cyclohexene as well as 1,2-, 1,3-, and 1,4-cyclohexane dicarboxylic acids. Thus, we have synthesized a 1,2-cyclohexenedicarboxylate of Cd, [Cd(1,2-CHeDC)(H2O)] (I), a 1,2-cyclohexanedicarboxylate of Pb, [Pb(1,2-CHDC)] (II), and three 1,4-cyclohexanedicarboxylates of La [La2(1,4-CHDC)3(H2O)4] (III), [La3(1,4-HCHDC)2(1,4-CHDC)5(H2O)2].H2O (IV) and [La2(1,4-CHDC)3(H2O)].2.5 H2O (V) under hydrothermal conditions and determined their structures. A mixed dicarboxylate involving both 1,3- and 1,4-cyclohexenedicarboxylates of Pb, [Pb3O(1,3-CHDC)(1,4-CHDC)].0.5 H2O (VI) and a 1,4-cyclohexanedicarboxylate of Pb, [Pb(6)O(2)(1,4-CHDC)3(1,4-HCHDC)2], have also been synthesized and characterized. While the 1,2-dicarboxylates have layered structures, the 1,4-dicarboxylates and the mixed dicarboxylates possess three-dimensional structures. Interestingly, both the 1,2 and 1,4-dicarboxylates are true hybrid compounds composed of infinite M-O-M linkages. The equatorial-equatorial (e,e) conformation is adopted commonly in all these compounds, although less stable conformations are encountered occasionally. The formation of the layered and the three-dimensional structures can be understood based on the relative disposition of the two carboxylic groups, the 1,4-isomer favoring the three-dimensional structure. Based on the results of the present study along with the available literature, we conclude that in order to obtain three-dimensional hybrid structures with metal-oxygen-metal networks, it appears necessary to make use of the 1,4-cyclohexanedicarboxylic acid.

摘要

为确定决定涉及金属-氧-金属键的金属二羧酸盐三维杂化结构形成的因素,我们研究了源自1,2-环己烯以及1,2-、1,3-和1,4-环己烷二羧酸的金属二羧酸盐。因此,我们在水热条件下合成了镉的1,2-环己烯二羧酸盐[Cd(1,2-CHeDC)(H₂O)](I)、铅的1,2-环己烷二羧酸盐[Pb(1,2-CHDC)](II)以及镧的三种1,4-环己烷二羧酸盐[La₂(1,4-CHDC)₃(H₂O)₄](III)、[La₃(1,4-HCHDC)₂(1,4-CHDC)₅(H₂O)₂]·H₂O(IV)和[La₂(1,4-CHDC)₃(H₂O)]·2.5H₂O(V),并确定了它们的结构。还合成并表征了一种涉及铅的1,3-和1,4-环己烯二羧酸盐的混合二羧酸盐[Pb₃O(1,3-CHDC)(1,4-CHDC)]·0.5H₂O(VI)以及铅的一种1,4-环己烷二羧酸盐[Pb(6)O₂(1,4-CHDC)₃(1,4-HCHDC)₂]。虽然1,2-二羧酸盐具有层状结构,但1,4-二羧酸盐和混合二羧酸盐具有三维结构。有趣的是,1,2-和1,4-二羧酸盐都是由无限的M-O-M键组成的真正杂化化合物。所有这些化合物通常采用赤道-赤道(e,e)构象,不过偶尔也会遇到不太稳定的构象。基于两个羧基的相对排列,可以理解层状和三维结构的形成,1,4-异构体有利于形成三维结构。根据本研究结果以及现有文献,我们得出结论,为了获得具有金属-氧-金属网络的三维杂化结构,似乎有必要使用1,4-环己烷二羧酸。

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