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基于铒(III)离子和不对称二甲基琥珀酸配体的两种新型金属有机骨架的形成的热力学和动力学控制。

Thermodynamic and kinetic control on the formation of two novel metal-organic frameworks based on the Er(III) ion and the asymmetric dimethylsuccinate ligand.

机构信息

Instituto de Ciencia de Materiales de Madrid, CSIC, Madrid, Spain.

出版信息

Inorg Chem. 2010 Jun 7;49(11):5063-71. doi: 10.1021/ic100181d.

Abstract

Two new layered polymeric frameworks have been synthesized under different hydrothermal conditions and characterized by single-crystal X-ray diffraction, thermal analysis, and variable temperature-Fourier Transform Infrared Spectroscopy (VT-FTIR). The compound I, with formula [Er(2)(dms)(3)(H(2)O)(4)], has a triclinic cell with parameters a = 5.8506 A, b = 9.8019 A, c = 11.9747 A, alpha = 70.145 degrees , beta = 80.234 degrees , and gamma = 89.715 degrees , and the compound II, [Er(2)(dms)(3)(H(2)O)], is monoclinic and its cell parameters are a = 11.1794 A, b = 18.2208 A, c = 12.7944 A, beta = 112.4270 degrees , where dms = 2,2-dimethylsuccinate ligand. A theoretical study including energy calculations of the dms conformers was carried out at the Density Functional Theory (DFT-B3LYP) level of theory, using the 6-311G* basis set. Further calculations of the apparent formation energies of I and II crystalline structures were performed by means of the periodic density functional theory, using DF plane-waves. The analysis of the structural features, theoretical relative stabilities, and the influence of synthesis conditions are presented here. The heterogeneous catalytic activity of the new compounds is tested and reported.

摘要

两种新的层状聚合物框架在不同的水热条件下合成,并通过单晶 X 射线衍射、热分析和变温傅里叶变换红外光谱(VT-FTIR)进行了表征。化合物 I,分子式为[Er(2)(dms)(3)(H(2)O)(4)],具有三斜晶胞参数 a = 5.8506 A, b = 9.8019 A, c = 11.9747 A, alpha = 70.145 度, beta = 80.234 度, 和 gamma = 89.715 度,化合物 II,[Er(2)(dms)(3)(H(2)O)],是单斜晶系,其晶胞参数为 a = 11.1794 A, b = 18.2208 A, c = 12.7944 A, beta = 112.4270 度,其中 dms = 2,2-二甲基琥珀酸配体。在密度泛函理论(DFT-B3LYP)水平上,使用 6-311G*基组进行了包括 dms 构象能计算的理论研究。通过周期性密度泛函理论,使用 DF 平面波,进一步计算了 I 和 II 晶体结构的表观形成能。这里介绍了结构特征、理论相对稳定性以及合成条件的影响的分析。测试并报道了新化合物的多相催化活性。

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