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Experimental and theoretical charge density of hydrated cupric acetate

机译:水合乙酸铜的实验和理论电荷密度

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The charge density of the hydrated cupric acetate Cu _2(μ- OOCCH _3) _4·2H _2O has been studied experimentally at 100 K and by DFT calculations on the isolated molecule using the Quantum Theory of Atoms In Molecules (QTAIMs). The bimetallic moiety is bridged by four equivalent acetate groups each other perpendicular and forming penta-atomic rings. The QTAIM parameters of charge density, its Laplacian, potential and kinetic energy density, delocalization indexes, static deformation density have been used to describe all intra- and intermolecular interactions. The topological analysis of the charge density maps shows the expected bond critical points with the corresponding bond paths, Cu-Cu bonding included. The data obtained using the different parameters and functions are consistent for all types of interatomic interactions, i.e. covalent, dative and intermetallic. The unpaired electrons responsible of the magnetic properties of d ~9 Cu(II) ions occupy the orbitals pointing towards the acetate groups. The valence shell orbital populations of Cu(II) are consistent with the distortion of the octahedral coordination due to the Jahn-Teller effect.
机译:水合乙酸铜Cu _2(μ-OOCCH _3)_4·2H _2O的电荷密度已通过分子原子量子论(QTAIMs)在100 K上通过DFT计算对分离出的分子进行了实验研究。双金属部分被四个当量的乙酸酯基团彼此垂直地桥接并形成五原子环。电荷密度,其拉普拉斯算子,势能和动能密度,离域指数,静态变形密度的QTAIM参数已用于描述所有分子内和分子间的相互作用。电荷密度图的拓扑分析显示了具有相应键路径(包括Cu-Cu键)的预期键临界点。对于所有类型的原子间相互作用,即共价,导数和金属间相互作用,使用不同参数和函数获得的数据都是一致的。负责d〜9 Cu(II)离子磁性的不成对电子占据指向乙酸酯基团的轨道。由于Jahn-Teller效应,Cu(II)的价壳轨道族与八面体配位的畸变一致。

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