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Electronic structure of two isostructural ‘paddle-wheel’ complexes: a comparative study

机译:两种同构桨轮配合物的电子结构:比较研究

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摘要

The experimental electron density distribution in two isostructural and isomorphous complexes, tetra­kis(μ2-acetato)di­aquadicopper(II) [H2OCu(ac)2Cu(ac)2H2O] (I) and tetra­kis(μ2-acetato)diaquadichromium(II), [H2OCr(ac)2Cr(ac)2H2O] (II), has been obtained from high-resolution X-ray diffraction data in order to shed light on the bonding properties in the compounds studied. It has been shown that from accurate X-ray data it is possible to discuss the bonding capability of the metal atom (Cu/Cr) and the ligands in these complexes. A comparison of results obtained from averaged and non-averaged X-ray data demonstrates that using the non-averaged data and introducing an anisotropic correction for secondary extinction errors provides a more detailed distribution of the electron density in the area of the metal atoms. In both complexes studied, the bonding of the acetate oxygen atom to the central metal atom is significantly affected by the formation of hydrogen bonds. The electron density and its Laplacian at the bond critical point of metal–oxygen coordination bonds for those oxygen atoms not involved in the intermolecular hydrogen bonds are approximately 10% larger compared with the case when oxygen atoms take part in hydrogen bonds with the neighboring water molecules. It is shown that metal–oxygen bonds in a quasi-equatorial plane are typical coordination bonds and differ significantly from the apical metal–oxygen bond. Metal–metal inter­action with a small positive value of the electron density Laplacian at this bond critical point is mainly of electrostatic character. The metal–metal inter­action is definitely not a bond according to the classical definition. Based on a search of the Cambridge Structural Database, it can be argued that there are four typical coordination bonds in the [CuO6] chromophore, similar to the four Cu—O coordination bonds in the basal plane of the CuO5 pyramid in one of the complexes under study.
机译:在两种同构和同构络合物中的实验电子密度分布,四(μ2-乙酰基)二重双铜(II)[H2OCu(ac)2Cu(ac)2H2O](I)和四(μ2-乙酰基)二重铬(II),[H2OCr (ac)2Cr(ac)2H2O](II)是从高分辨率X射线衍射数据获得的,目的是阐明所研究化合物的键合性能。已经表明,从准确的X射线数据中,可以讨论金属原子(Cu / Cr)与这些配合物中配体的键合能力。从平均X射线数据和非平均X射线数据获得的结果的比较表明,使用非平均数据并针对二次消光误差引入各向异性校正,可以在金属原子区域内提供更详细的电子密度分布。在所研究的两种络合物中,乙酸氧原子与中心金属原子的键均受氢键形成的影响。对于那些不参与分子间氢键的氧原子,在金属-氧配位键的键临界点处的电子密度及其拉普拉斯算子比氧原子与相邻水分子参与氢键的情况大大约10% 。研究表明,在赤道平面内的金属-氧键是典型的配位键,与顶部的金属-氧键明显不同。在该键临界点上,电子密度拉普拉斯正值小的正值的金属间相互作用主要是静电特性。根据经典定义,金属之间的相互作用绝对不是键。根据对剑桥结构数据库的搜索,可以证明[CuO6]发色团中有四个典型的配位键,类似于其中一个复合物中CuO5金字塔的基面中的四个Cu-O配位键。在研究中。

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