首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >A Computational Analysis of the Intrinsic Plasticity of Five-Coordinate Cu(II) Complexes and the Factors Leading to the Breakdown of the Orbital Directing Effect in Paddlewheel Secondary Building Units
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A Computational Analysis of the Intrinsic Plasticity of Five-Coordinate Cu(II) Complexes and the Factors Leading to the Breakdown of the Orbital Directing Effect in Paddlewheel Secondary Building Units

机译:五坐标Cu(II)复合物的内在可塑性的计算分析及导致桨轮型二级建筑单元中轨道指挥作用分解的因素

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Quantum chemical calculations on model copper paddlewheel (CPW) complexes of general formula [Cu-2(mu(2)-O2CR)(4)L-2] establish two local coordination geometries at the metal centers depending on the balance between equatorial and axial ligand fields. When the equatorial field is stronger than the axial field (large ligand field asymmetry), dx2-y2 dominates the stereochemical activity of the d(9) shell resulting in a relatively rigid, "orbitally directed" planar or square pyramidal structure. However, if the axial field is significantly increased, or the equatorial field moderately weakened, a small ligand field asymmetry results and both dx2-y2 and dz2 are involved in the stereochemical activity. This results in a "plastic," distorted trigonal bipyramidal geometry where the former axial ligand moves into one of the original four equatorial positions. Linkers already used to synthesize zinc-dabco MOFs (dabco = 1,4-diazabicyclo[2.2.2]octane) are shown to generate plastic CPW secondary building unit analogs with potential implications for conferring breathing behavior for MOFs which would currently be assumed to be rigid. (c) 2019 Wiley Periodicals, Inc.
机译:一般式[Cu-2(2)-O2Cr)(4)L-2]铜桨轮(CPW)复合物的量子化学计算[Cu-2(mu(2)-O2cr)(4)L-2],根据赤道和轴向之间的平衡,在金属中心建立两个局部配位几何形状配体领域。当赤道场比轴向场(大配体场不对称)强时,DX2-Y2主导D(9)壳的立体化学活性,导致相对刚性的“轨道指向”平面或方形锥体结构。然而,如果轴向磁场显着增加,或者赤道区域中等削弱,小配体场不对称结果和DX2-Y2和DZ2都涉及立体化学活性。这导致“塑料”变形的三角形双滤网几何形状,其中前轴向配体进入原始的四个赤道位置之一。已经用于合成锌-DABCO MOF的接头(DABCO = 1,4-DiazabiCCLO [2.2.2]辛烷值),以产生塑料CPW二级建筑单元类似物,其潜在的影响对于赋予目前假设的MOF的呼吸行为死板的。 (c)2019 Wiley期刊,Inc。

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