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作为单电子密度和哈密顿算符的分子结构式:扩展的VIF方法

Molecular structural formulas as one-electron density and hamiltonian operators: the VIF method extended.

作者信息

Alia Joseph D

机构信息

University of Minnesota, Morris, Division of Science and Math, 600 East 4th Street, Morris, Minnesota 56267, USA.

出版信息

J Phys Chem A. 2007 Mar 29;111(12):2307-18. doi: 10.1021/jp065855y. Epub 2007 Mar 8.

Abstract

The valency interaction formula (VIF) method is given a broader and more general interpretation in which these simple molecular structural formulas implicitly include all overlaps between valence atomic orbitals even for interactions not drawn in the VIF picture. This applies for VIF pictures as one-electron Hamiltonian operators as well as VIF pictures as one-electron density operators that constitute a new implementation of the VIF method simpler in its application and more accurate in its results than previous approaches. A procedure for estimating elements of the effective charge density-bond order matrix, Pmunu, from electron configurations in atoms is presented, and it is shown how these lead to loop and line constants in the VIF picture. From these structural formulas, one finds the number of singly, doubly, and unoccupied molecular orbitals, as well as the number of molecular orbitals with energy lower, equal, and higher than -1/2Eh, the negative of the hydrogen atom's ionization energy. The VIF results for water are in qualitative agreement with MP2/6311++G3df3pd, MO energy levels where the simple VIF for water presented in the earlier literature does not agree with computed energy levels. The method presented here gives the simplest accurate VIF pictures for hydrocarbons. It is shown how VIF can be used to predict thermal barriers to chemical reactions. Insertion of singlet carbene into H2 is given as an example. VIF pictures as one-electron density operators describe the ground-state multiplicities of B2, N2, and O2 molecules and as one-electron Hamiltonian operators give the correct electronegativity trend across period two. Previous implementations of VIF do not indicate singly occupied molecular orbitals directly from the pictorial VIF rules for these examples. The direct comparison between structural formulas that represent electron density and those that represent energy is supported by comparison of a simple electronegativity scale, chiD=N/n2, with well-known electronegativity scales of Pauling, Mulliken, and Allen. This scale comes from the method used to calculate Pmumu for sp3 hybridized period-two elements and is comparable to electronegativity because it has the same form as <1/r> for hydrogenic orbitals. It therefore provides a physical basis for the representation of one electron density and Hamiltonian operators by the same VIF picture.

摘要

价相互作用公式(VIF)方法得到了更广泛和普遍的解释,在这种解释中,这些简单的分子结构式隐含地包括了价原子轨道之间的所有重叠,即使对于VIF图中未画出的相互作用也是如此。这适用于作为单电子哈密顿算符的VIF图以及作为单电子密度算符的VIF图,它们构成了VIF方法的一种新实现方式,在应用上比以前的方法更简单,结果更准确。本文提出了一种从原子的电子构型估计有效电荷密度 - 键级矩阵Pmunu元素的程序,并展示了这些元素如何导致VIF图中的环和线常数。从这些结构式中,可以找到单占据、双占据和未占据分子轨道的数量,以及能量低于、等于和高于 -1/2Eh(氢原子电离能的负值)的分子轨道数量。水的VIF结果与MP2/6311++G3df3pd的分子轨道能级在定性上一致,而早期文献中给出的水的简单VIF与计算能级不一致。本文提出的方法给出了烃类最简单准确的VIF图。展示了VIF如何用于预测化学反应的热障。以单线态卡宾插入H2为例。作为单电子密度算符的VIF图描述了B2、N2和O2分子的基态多重性,作为单电子哈密顿算符的VIF图给出了第二周期正确的电负性趋势。对于这些例子,以前的VIF实现方式不能直接从图形VIF规则中指出单占据分子轨道。通过将简单的电负性标度chiD = N/n2与著名的鲍林、穆利肯和艾伦电负性标度进行比较,支持了表示电子密度的结构式和表示能量的结构式之间的直接比较。这个标度来自用于计算sp3杂化第二周期元素的Pmumu的方法,并且与电负性具有可比性,因为它与氢原子轨道的<1/r>具有相同的形式。因此,它为用相同的VIF图表示单电子密度和哈密顿算符提供了物理基础。

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