首页> 外文期刊>The Journal of Chemical Physics >A RELATIVISTIC KOHN-SHAM DENSITY FUNCTIONAL PROCEDURE BY MEANS OF DIRECT PERTURBATION THEORY .2. APPLICATION TO THE MOLECULAR STRUCTURE AND BOND DISSOCIATION ENERGIES OF TRANSITION METAL CARBONYLS AND RELATED COMPLEXES
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A RELATIVISTIC KOHN-SHAM DENSITY FUNCTIONAL PROCEDURE BY MEANS OF DIRECT PERTURBATION THEORY .2. APPLICATION TO THE MOLECULAR STRUCTURE AND BOND DISSOCIATION ENERGIES OF TRANSITION METAL CARBONYLS AND RELATED COMPLEXES

机译:用直接摄动理论的相对论KOHN-SHAM密度函数过程2。在过渡金属碳及相关配合物的分子结构和键解离能中的应用

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The implementation of analytical geometry gradients within the framework of the relativistic density functional procedure described earlier allows the calculation of the geometrical structure and bond dissociation energies of polyatomic molecules. This has been done for the nine transition metal carbonyls M(CO)(n) (n=6: M=Cr, Mo, W; n=5: M=Fe, Ru, Os; n=4: M=Ni, Pd, Pt). To determine the first metal-carbonyl bond dissociation energy, a complete geometry optimization of the fragments M(CO)(n-1) has been performed, and the energy differences have been corrected for the basis set superposition error (BSSE). The same procedure has been applied to the molecular structure of the nine complexes M(CO)(5)L (M=Cr, Mo, W; L=N-2, CS, NO+) and their M-L bond dissociation energies. The results are in good agreement with quasirelativistic density functional and high-level ab initio calculations. In most cases, the agreement with experimental values, where available, is good as well. (C) 1996 American Institute of Physics. [References: 49]
机译:在较早描述的相对论密度泛函程序框架内实施解析几何梯度,可以计算多原子分子的几何结构和键解离能。对于九种过渡金属羰基化合物M(CO)(n)(n = 6:M = Cr,Mo,W; n = 5:M = Fe,Ru,Os; n = 4:M = Ni, Pd,Pt)。为了确定第一个金属-羰基键的解离能,已对碎片M(CO)(n-1)进行了完整的几何优化,并针对基集叠加误差(BSSE)校正了能量差。相同的程序已应用于九个配合物M(CO)(5)L(M = Cr,Mo,W; L = N-2,CS,NO +)的分子结构及其M-L键解离能。结果与拟密度论密度泛函和高级从头算起的计算非常吻合。在大多数情况下,与实验值的一致性(如果有)也很好。 (C)1996年美国物理研究所。 [参考:49]

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