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用投影 Hartree-Fock 方法预测单重态-三重态能量分裂。

Predicting singlet-triplet energy splittings with projected Hartree-Fock methods.

机构信息

Department of Chemistry, Rice University, Houston, Texas 77005-1892, United States.

出版信息

J Phys Chem A. 2013 Aug 22;117(33):8073-80. doi: 10.1021/jp405755z. Epub 2013 Aug 2.

Abstract

Hartree-Fock (HF) and density functional theory (DFT) methods are known for having problems in predicting singlet-triplet energy splittings when the system displays significant diradical character. Multireference methods are traditionally advocated to deal with the spin-contamination problem inherent in broken-symmetry mean-field methods. In the present work, spin-contamination is rigorously eliminated by means of a symmetry projection approach, carried out in a variation-after-projection fashion, recently implemented in our research group. We here explore the performance of a variety of projected Hartree-Fock (PHF) approaches (SUHF, KSUHF, SGHF, and KSGHF) in predicting singlet-triplet energy gaps in a broad set of diradical systems: small diatomic molecules, carbenes and silenes, and a few larger molecules (trimethylenemethane and benzyne isomers). For most of these systems, accurate experimental data is available in the literature. Additionally, we assess the quality of the geometrical parameters obtained in SUHF-based optimizations for some of the systems considered. Our results indicate that PHF methods yield high-quality multireference wave functions, providing a good description of the ground state potential surface as well as an accurate singlet-triplet splitting gap, all within a modest mean-field computational cost.

摘要

哈特利-福克(HF)和密度泛函理论(DFT)方法在预测具有显著自由基特征的体系的单重态-三重态能分裂时存在问题。多参考方法传统上被提倡用于处理在破对称平均场方法中固有的自旋污染问题。在本工作中,通过我们研究小组最近实施的一种变分后投影方法中的对称投影方法,严格消除了自旋污染。我们在这里探讨了各种投影哈特利-福克(PHF)方法(SUHF、KSUHF、SGHF 和 KSGHF)在预测广泛的自由基体系中单重态-三重态能隙方面的性能:小分子双原子分子、卡宾和硅烯,以及一些较大的分子(三甲烯甲烷和苯炔异构体)。对于这些体系中的大多数,文献中都有准确的实验数据。此外,我们还评估了在某些所考虑的体系中基于 SUHF 的优化中获得的几何参数的质量。我们的结果表明,PHF 方法产生了高质量的多参考波函数,为基态势能面提供了良好的描述,以及准确的单重态-三重态分裂间隙,所有这些都在适度的平均场计算成本内。

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