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通过气体电子衍射和密度泛函理论计算研究镧系金属的三(二(三甲基乙酰基)甲烷)配合物Ln(dpm)₃的分子结构:Ln(dpm)₃配合物与立方倍半氧化物Ln₂O₃中Ln - O键长和焓的比较

Molecular structures of tris(dipivaloylmethanato) complexes of the lanthanide metals, Ln(dpm)3, studied by gas electron diffraction and density functional theory calculations: a comparison of the Ln-O Bond distances and enthalpies in Ln(dpm)3 complexes and the cubic sesquioxides, Ln2O3.

作者信息

Girichev G V, Giricheva N I, Haaland Arne, Kuzmina N P, Samdal Svein, Strenalyuk T N, Tverdova N V, Zaitseva I G

机构信息

Ivanovo State University of Chemistry and Technology, Engels Avenue 7, 153460 Ivanovo, Russia.

出版信息

Inorg Chem. 2006 Jun 26;45(13):5179-86. doi: 10.1021/ic060079u.

Abstract

The molecular structures of tris(dipivaloylmethanato)neodymium(III), Nd(dpm)3, and tris(dipivaloylmethanato)ytterbium(III), Yb(dpm)3, have been determined by gas electron diffraction (GED) and structure optimizations through density functional theory (DFT) calculations. Both molecules were found to have D3 molecular symmetry. The most important structure parameters (r(a) structure) are as follows (GED/DFT): Nd-O = 2.322(5)/2.383 A, Yb-O = 2.208(5)/2.243 A, O-Nb-O = 72.1(3)/71.3 degrees , and O-Yb-O = 75.3(2)/75.8 degrees . The twist angles of the LnO6 coordination polyhedron, defined as zero for prismatic and 30 degrees for antiprismatic coordination, were theta = 19.1(3)/14.2 degrees for Nd and 20.4(2)/19.2 degrees for Yb. Structure optimizations of La(dpm)3, Gd(dpm)3 Er(dpm)3, and Lu(dpm)3 by DFT also yielded equilibrium structures of D3 symmetry with bond distances of La-O = 2.438 A, Gd-O = 2.322 A, Er-O = 2.267 A, and Lu-O = 2.232 A. The Ln-O bond distances in 12 Ln(dpm)3 complexes studied by GED decrease in a nearly linear manner with the increasing atomic number (Z) of the metal atom, as do the Ln-O bond distances in the cubic modifications of 14 sesquioxides, Ln2O3. The bond distances in the dpm complexes are, however, about 2% shorter. The mean Ln-O bond rupture enthalpies of the cubic sesquioxides calculated from thermodynamic data in the literature vary in an irregular manner with the atomic number; the La-O, Gd-O, Tb-O, and Lu-O bonds are nearly equally strong, and the remaining bonds are significantly weaker. The Ln-O bond rupture enthalpies previously reported for 11 Ln(dpm)3 complexes are on the average 13 kJ mol(-1) or about 5% smaller than in the sesquioxides, but they vary in a similar manner along the series: it is suggested that the pattern reflects variations in the absolute enthalpies of the gaseous Ln atoms.

摘要

通过气体电子衍射(GED)和密度泛函理论(DFT)计算进行结构优化,已确定了三(二(三甲基乙酰基)甲烷)钕(III)(Nd(dpm)3)和三(二(三甲基乙酰基)甲烷)镱(III)(Yb(dpm)3)的分子结构。发现这两种分子都具有D3分子对称性。最重要的结构参数(r(a)结构)如下(GED/DFT):Nd - O = 2.322(5)/2.383 Å,Yb - O = 2.208(5)/2.243 Å,O - Nd - O = 72.1(3)/71.3°,以及O - Yb - O = 75.3(2)/75.8°。镧系元素O6配位多面体的扭转角,对于棱柱形配位定义为0°,对于反棱柱形配位定义为30°,Nd的扭转角为θ = 19.1(3)/14.2°,Yb的扭转角为20.4(2)/19.2°。通过DFT对La(dpm)3、Gd(dpm)3、Er(dpm)3和Lu(dpm)3进行结构优化,也得到了D3对称性的平衡结构,其键长分别为La - O = 2.438 Å、Gd - O = 2.322 Å、Er - O = 2.267 Å和Lu - O = 2.232 Å。通过GED研究的12种Ln(dpm)3配合物中的Ln - O键长随着金属原子原子序数(Z)的增加以近似线性的方式减小,14种三氧化二镱(Ln2O3)立方变体中的Ln - O键长也是如此。然而,dpm配合物中的键长约短2%。根据文献中的热力学数据计算得到的立方三氧化二镱的平均Ln - O键断裂焓随原子序数呈不规则变化;La - O、Gd - O、Tb - O和Lu - O键的强度几乎相同,其余键明显较弱。先前报道的11种Ln(dpm)3配合物的Ln - O键断裂焓平均比三氧化二镱中的小13 kJ·mol⁻¹或约5%,但它们沿该系列的变化方式相似:表明这种模式反映了气态Ln原子绝对焓的变化。

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