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Quantum chemical calculations on metal dications solvated by formaldehyde, acetone and DMSO ligands

机译:甲醛,丙酮和DMSO配体溶解的金属指示剂的量子化学计算

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Ab initio and DFT calculations have been carried out to explore the thermodynamic and/or kinetic stabilities of M2+L complexes (M = Be, Mg, Ca, and Zn, L = formaldehyde, acetone, and DMSO). Based on the computational data, all of the investigated monoligated doubly charged metal cation complexes are expected to be observable in the gas phase. In addition to thermodynamic stability, the kinetic energy barriers further stabilize the monoligated doubly charged metal cations. Thermodynamically unstable complexes are stabilized by Coulomb barriers. Monoligated metal dications have been classified into metastable and thermodynamically stable species. Comparison with experiments indicates agreement for magnesium and calcium containing systems. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 35]
机译:已经进行了从头算和DFT计算以探索M2 + L配合物(M = Be,Mg,Ca和Zn,L =甲醛,丙酮和DMSO)的热力学和/或动力学稳定性。基于计算数据,所有研究的单配位双电荷金属阳离子络合物有望在气相中观察到。除了热力学稳定性之外,动能屏障还使单连接的双电荷金属阳离子更稳定。热力学不稳定的配合物通过库仑势垒得以稳定。单硬金属指示剂已分类为亚稳态和热力学稳定的物种。与实验的比较表明,含镁和钙的体系是一致的。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:35]

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