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Significant bonding rearrangements triggered by Mg-4 clusters

机译:MG-4集群触发的显着粘接重排部

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The structure, stability, and bonding of the complexes formed by the interaction of Mg-4 clusters and first row Lewis bases, namely, ammonia, water, and hydrogen fluoride, have been investigated through the use of high-level G4 single-reference and CASPT2 multireference formalisms. The adducts formed reflect the high electrophilicity of the Mg-4 cluster through electron density holes in the neighborhood of each metallic center. After the adduct formation, the metallic bonding of the Mg-4 moiety is not significantly altered so that the hydrogen shifts from the Lewis base toward the Mg atoms lead to new local minima with enhanced stability. For the particular case of ammonia and water, the global minima obtained when all the hydrogens of the Lewis base are shifted to the Mg-4 moiety have in common a very stable scaffold with a N or an O center covalently tetracoordinated to the four Mg atoms, so the initial bonding arrangements of both reactants have completely disappeared. The reactivity features exhibited by these Mg-4 clusters suggest that nanostructures of this metal might have an interesting catalytic behavior.
机译:通过使用高级G4单参比和CASPT2多参比形式,研究了Mg-4团簇与第一排路易斯碱(即氨、水和氟化氢)相互作用形成的配合物的结构、稳定性和键合。形成的加合物通过每个金属中心附近的电子密度空穴反映了Mg-4团簇的高亲电性。加合物形成后,Mg-4部分的金属键没有显著改变,因此氢从路易斯碱向Mg原子转移,导致新的局部极小值,并增强稳定性。对于氨和水的特殊情况,当路易斯碱的所有氢转移到Mg-4部分时,得到的全局极小值有一个非常稳定的支架,其N或O中心与四个Mg原子共价四配位,因此两种反应物的初始键排列已完全消失。这些Mg-4团簇所表现出的反应性特征表明,这种金属的纳米结构可能具有有趣的催化行为。

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