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关于自旋交叉化合物CASPT2计算的零阶哈密顿量。

On the zeroth-order hamiltonian for CASPT2 calculations of spin crossover compounds.

作者信息

Vela Sergi, Fumanal Maria, Ribas-Ariño Jordi, Robert Vincent

机构信息

Laboratoire de Chimie Quantique, UMR 7177, Université de Strasbourg, 4 rue Blaise Pascal, F-67000 Strasbourg, France.

Departament de Química Física and IQTCUB, Universitat de Barcelona, Av. Diagonal 645, 08028, Barcelona, Spain.

出版信息

J Comput Chem. 2016 Apr 15;37(10):947-53. doi: 10.1002/jcc.24283. Epub 2015 Dec 23.

Abstract

Complete active space self-consistent field theory (CASSCF) calculations and subsequent second-order perturbation theory treatment (CASPT2) are discussed in the evaluation of the spin-states energy difference (ΔH(elec)) of a series of seven spin crossover (SCO) compounds. The reference values have been extracted from a combination of experimental measurements and DFT + U calculations, as discussed in a recent article (Vela et al., Phys Chem Chem Phys 2015, 17, 16306). It is definitely proven that the critical IPEA parameter used in CASPT2 calculations of ΔH(elec), a key parameter in the design of SCO compounds, should be modified with respect to its default value of 0.25 a.u. and increased up to 0.50 a.u. The satisfactory agreement observed previously in the literature might result from an error cancellation originated in the default IPEA, which overestimates the stability of the HS state, and the erroneous atomic orbital basis set contraction of carbon atoms, which stabilizes the LS states.

摘要

在评估一系列七种自旋交叉(SCO)化合物的自旋态能量差(ΔH(elec))时,讨论了完全活性空间自洽场理论(CASSCF)计算以及随后的二阶微扰理论处理(CASPT2)。如最近一篇文章(Vela等人,《物理化学化学物理》2015年,17卷,16306页)所讨论的,参考值是从实验测量和DFT + U计算的组合中提取的。已明确证明,在ΔH(elec)的CASPT2计算中使用的关键IPEA参数(SCO化合物设计中的一个关键参数)应相对于其默认值0.25 a.u.进行修改,并增加到0.50 a.u.。先前文献中观察到的令人满意的一致性可能源于默认IPEA高估了HS态的稳定性以及碳原子错误的原子轨道基组收缩稳定了LS态所导致的误差抵消。

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