首页> 外文期刊>Journal of chemical theory and computation: JCTC >Predicting Bond Dissociation Energies of Transition-Metal Compounds by Multiconfiguration Pair-Density Functional Theory and Second-Order Perturbation Theory Based on Correlated Participating Orbitals and Separated Pairs
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Predicting Bond Dissociation Energies of Transition-Metal Compounds by Multiconfiguration Pair-Density Functional Theory and Second-Order Perturbation Theory Based on Correlated Participating Orbitals and Separated Pairs

机译:基于相关参与轨道和分离对的多重配置对密度泛函理论和二阶扰动理论预测过渡金属化合物的结合解离能。

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We study the performance of multiconfiguration pair-density functional theory (MC-PDFT) and multireference perturbation theory for the computation of the bond dissociation energies in 12 transition-metal-containing diatomic molecules and three small transition-metal-containing polyatomic molecules and in two transition-metal dimers. The first step is a multiconfiguration self-consistent-field calculation, for which two choices must be made: (i) the active space and (ii) its partition into subspaces, if the generalized active space formulation is used. In the present work, the active space is chosen systematically by using three correlated-participating-orbitals (CPO) schemes, and the partition is chosen by using the separated-pair (SP) approximation. Our calculations show that MC-PDFT generally has similar accuracy to CASPT2, and the active-space dependence of MC-PDFT is not very great for transition-metal ligand bond dissociation energies. We also find that the SP approximation works very well, and in particular SP with the fully translated BLYP functional SP-ftBLYP is more accurate than CASPT2. SP greatly reduces the number of configuration state functions relative to CASSCF. For the cases of FeO and NiO with extended CPO active space, for which complete active space calculations are unaffordable, SP calculations are not only affordable but also of satisfactory accuracy. All of the MC-PDFT results are significantly better than the corresponding results with broken-symmetry spin-unrestricted Kohn-Sham density functional theory. Finally we test a perturbation theory method based on the SP reference and find that it performs slightly worse than CASPT2 calculations, and for most cases of the nominal-CPO active space, the approximate SP perturbation theory calculations are less accurate than the much less expensive SP-PDFT calculations.
机译:我们研究了多功能配置对密度泛函理论(MC-PDFT)和多引导扰动理论的性能,以计算12-含过渡金属的硅藻分子和三个小过渡金属的多原子分子和两个小型过渡金属的多原子分子的结合解离能计算过渡金属二聚体。第一步是多组件配置自我致一致性场计算,必须进行两种选择:(i)如果使用广泛的有效空间配方,则激活空间和(ii)将其分区分配到子空间。在本作工作中,通过使用三个相关的参与轨道(CPO)方案来系统地选择主动空间,并且通过使用分离对(SP)近似来选择分区。我们的计算表明,MC-PDFT通常对CASPT2具有相似的精度,并且MC-PDFT的有效空间依赖性对于过渡金属配体粘合解离能量不是很好。我们还发现SP近似值非常好,特别是具有完全翻译的BLYP功能的SP比Caspt2更精确。 SP大大降低了相对于CASSCF的配置状态功能的数量。对于未扩展的CPO有效空间的FEO和NIO的情况,对于哪个完整的活动空间计算是不适算的,SP计算不仅是经济实惠的,而且具有令人满意的准确性。所有MC-PDFT的结果明显优于相应的结果与破碎的对称旋转 - 不受限制的Kohn-Mham密度功能理论。最后,我们基于SP参考测试了一种扰动理论方法,并发现它比CASPT2计算略差,并且对于大多数标称CPO有效空间的情况,大致SP扰动理论计算比更便宜的SP更准确-pdft计算。

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