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首页> 外文期刊>Journal of the Chemical Society. Dalton Transactions >Synthesis and molecular structure of oxydiacetate complexes of nickel(II) and cobalt(II). Theoretical analysis of the planar and non-planar conformations of oxydiacetate ligand and oxydiacetic acid
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Synthesis and molecular structure of oxydiacetate complexes of nickel(II) and cobalt(II). Theoretical analysis of the planar and non-planar conformations of oxydiacetate ligand and oxydiacetic acid

机译:镍(II)和钴(II)的氧二乙酸酯配合物的合成和分子结构。双乙酸氧配体和氧二乙酸的平面和非平面构象的理论分析

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A novel synthetic route to [Ni(oda)(H2O) 3].1.5H(2)O 1 and [Co(oda)(H2O)(2)].H2O 2 [oda = oxydiacetate, O(CH2CO2-)(2)] is presented. These complexes react with bidentate N-donor ligands to yield compounds of general formula [M(oda) ( N-N)(H2O)] (M = Ni, N-N = bipy, 3; phen, 5; tmeda, 7. M = Co, N-N = bipy, 4; phen, 6; tmeda, 8), which can be isolated as crystalline solids with different numbers of hydration water molecules. The molecular structures of the compounds 3 and 4 have been shown by X-ray analysis to crystallize with 2.5H(2)O. In these compounds, the oda ligand adopts a planar, tridentate conformation (mer) in binding the octahedral metal centre. By contrast, the recent X-ray characterization of 1 has shown that the oxydiacetate ligand completes the octahedral coordination of the metal in the fac arrangement. The DFT method has been adopted to investigate theoretically the flexibility of this ligand. First, calculations have been carried out on the free oxydiacetic acid (H(2)oda) and its anion. Then, a model of 1 has been studied in order to find the geometric and energetic implications for the alternative oda conformations (mer and fac) in reaching the octahedral environment about the metal. In general, the geometric parameters are in good agreement with those available from crystal structures. From the energetic viewpoint, the mer conformation is favoured by a small energy difference (2.0 kcal mol(-1)). On the other hand, the fac conformation in 1 may be justified with the presence of the water hydration molecules (not considered by our model) which may deeply affect the energetics of the overall system by forming strong hydrogen bonds with the oxydiacetate ligand. [References: 78]
机译:[Ni(oda)(H2O)3] .1.5H(2)O 1和[Co(oda)(H2O)(2)]。H2O 2的新颖合成路线[oda =氧二乙酸酯,O(CH2CO2-)( 2)]。这些络合物与双齿N供体配体反应,生成通式[M(oda)(NN)(H2O)]的化合物(M = Ni,NN = bipy,3; phen,5; tmeda,7。 NN = bipy,4; phen,6; tmeda,8),可以分离为具有不同数量水合水分子的结晶固体。 X射线分析表明,化合物3和4的分子结构可与2.5H(2)O结晶。在这些化合物中,oda配体在结合八面体金属中心时采用平面的三齿构象(mer)。相反,最近的1的X射线表征表明,二乙酸氧配体在fac排列中完成了金属的八面体配位。已采用DFT方法从理论上研究了该配体的柔性。首先,已经对游离氧二乙酸(H(2)oda)及其阴离子进行了计算。然后,对1的模型进行了研究,以便找到到达金属的八面体环境时替代oda构象(mer和fac)的几何和能量含义。通常,几何参数与可从晶体结构获得的几何参数非常一致。从能量的角度来看,mer构象有利于小的能量差(2.0 kcal mol(-1))。另一方面,可以通过存在水合分子(我们的模型未考虑)来证明1中的fac构象是正当的,水合分子可以通过与氧二乙酸酯配体形成牢固的氢键而深刻影响整个系统的能量学。 [参考:78]

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