Coppens Philip, Volkov Anatoliy
Department of Chemistry, State University of New York at Buffalo, Buffalo, NY 14260-3000, USA.
Acta Crystallogr A. 2004 Sep;60(Pt 5):357-64. doi: 10.1107/S0108767304014953. Epub 2004 Aug 26.
The comparison of theory and experiment remains a cornerstone of scientific inquiry. Various levels of such comparison applicable to charge-density analysis are discussed, including static and dynamic electron densities, topological properties, d-orbital occupancies and electrostatic moments. The advantages and drawbacks of the pseudoatom multipole are discussed, as are the experimentally constrained wavefunctions introduced by Jayatilaka and co-workers, which combine energy minimization with the requirement to provide a reasonable fit to the X-ray structure factors. The transferability of atomic densities can be exploited through construction of a pseudoatom databank, which may be based on analysis of ab initio molecular electron densities, and can be used to evaluate a host of physical properties. Partitioning of theoretical energies with the Morokuma-Ziegler energy decomposition scheme allows direct comparison with electrostatic interaction energies obtained from electron densities represented by the pseudoatom formalism. Compared with the Buckingham expression for the interaction between non-overlapping densities, the agreement with theory is much improved when a newly developed hybrid EP/MM (exact potential/multipole model) method is employed.
理论与实验的比较仍然是科学探究的基石。本文讨论了适用于电荷密度分析的不同层次的此类比较,包括静态和动态电子密度、拓扑性质、d轨道占据情况和静电矩。文中讨论了赝原子多极子的优缺点,以及Jayatilaka及其同事引入的实验约束波函数,这些波函数将能量最小化与提供与X射线结构因子合理拟合的要求相结合。原子密度的转移性可以通过构建赝原子数据库来利用,该数据库可以基于对从头算分子电子密度的分析,并可用于评估一系列物理性质。使用Morokuma-Ziegler能量分解方案对理论能量进行划分,可以直接与从赝原子形式表示的电子密度中获得的静电相互作用能进行比较。与Buckingham关于非重叠密度之间相互作用的表达式相比,当采用新开发的混合EP/MM(精确势/多极模型)方法时,与理论的一致性有了很大提高。