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RELATIVISTIC EFFECTS IN THE CATIONIC PLATINUM CARBENE PTCH2+

机译:阳离子铂碳PTCH2 +的相对论效应

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Fully relativistic four-component Dirac-Fock Coulomb calculations in conjunction with a second-order perturbational estimate for the correlation energy have been performed in benchmark calculations on geometric and electronic structures as well as the binding energy of the cationic platinum carbene complex PtCH2+. The relativistic stabilization of this species amounts to as much as 50 kcal/mol and the combination of relativistic and correlation effects shorten the Pt-C bond length by nearly 1 bohr, changing the bond order from one to two. The relative importance of spin-free and spin-dependent relativistic effects on the geometry, the electronic structure, and the binding energy is evaluated by comparison to the Douglas-Kroll method. Relativistic effective core potentials are shown to describe the spin-free effects reliably. The best theoretical estimate for the bond dissociation energy underestimates the experimental value by 13% due to truncation errors in the one- and n-particle space treatments. The mixed Hartree-Fock/density-functional method Becke3-Lee-Yang-Parr performs surprisingly well with respect to the structure and binding energy of the target molecule. (C) 1996 American Institute of Physics. [References: 97]
机译:在几何和电子结构的基准计算以及阳离子铂卡宾复合物PtCH2 +的结合能中,已经完成了相对论的四分量Dirac-Fock库仑计算以及相关能量的二阶微扰估计。该物种的相对论稳定度高达50 kcal / mol,相对论和相关效应的结合使Pt-C键长度缩短了近1 bohr,从而将键序从一改变为二。通过与道格拉斯-克罗尔(Douglas-Kroll)方法比较,评估了无自旋和自旋相对论效应对几何形状,电子结构和结合能的相对重要性。相对论有效磁芯势能可靠地描述自旋效应。由于单粒子和n粒子空间处理中的截断误差,对键离解能的最佳理论估计低估了实验值13%。混合Hartree-Fock /密度函数方法Becke3-Lee-Yang-Parr在目标分子的结构和结合能方面表现出众。 (C)1996年美国物理研究所。 [参考:97]

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