首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Density functional based structure optimization for molecules containing heavy elements: analytical energy gradients for the Douglas-Kroll-Hess scalar relativistic approach to the LCGTO-DF method
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Density functional based structure optimization for molecules containing heavy elements: analytical energy gradients for the Douglas-Kroll-Hess scalar relativistic approach to the LCGTO-DF method

机译:包含重元素的分子的基于密度泛函的结构优化:Douglas-Kroll-Hess标量相对论方法的LCGTO-DF方法的分析能梯度

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摘要

The self-consistent scalar-relativistic linear combination of Gaussian-type orbitals density functional (LCGTO-DF) method has been extended to calculate analytical energy gradients. The method is based on the use of a unitary second order Douglas-Kroll-Hess (DKH) transformation for decoupling large and small components of the full four-component Dirac-Kohn-Sham equation. The approximate DKH transformation most common in molecular calculations has been implemented; this variant employs nuclear potential based projectors and it leaves the electron-electron interaction untransformed. Examples are provided for the geometry optimization of a series of heavy metal systems which feature a variety of metal-ligand bonds, like Au2, AuCl, AuH, Mo(CO)6 and W(CO)6 as well as the d10 complexes [Pd(PH3)2O2] and [Pt(PH3)2O2]. The calculated results, obtained with several gradient-corrected exchange-correlation potentials, compare very well with experimental data and they are of similar or even better accuracy than those of other high quality relativistic calculations reported so far.
机译:高斯型轨道密度泛函(LCGTO-DF)方法的自洽标量-相对论线性组合已扩展到计算解析能量梯度。该方法基于使用一元二阶Douglas-Kroll-Hess(DKH)变换来解耦完整的四分量Dirac-Kohn-Sham方程的大和小分量。已经实现了分子计算中最常见的近似DKH转换;此变体使用基于核势的投影仪,并且电子-电子相互作用保持不变。提供了一系列重金属系统的几何优化示例,这些系统具有多种金属-配体键,例如Au2,AuCl,AuH,Mo(CO)6和W(CO)6以及d10配合物[Pd (PH3)2O2]和[Pt(PH3)2O2]。用几种经过梯度校正的交换相关电位获得的计算结果与实验数据进行了很好的比较,它们的准确性与迄今为止报道的其他高质量相对论计算的结果相似甚至更好。

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