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多组态计算中活性轨道选择方法的比较

Comparison of Methods for Active Orbital Selection in Multiconfigurational Calculations.

作者信息

Tóth Zsuzsanna, Pulay Peter

机构信息

Department of Chemistry and Biochemistry, Fulbright College of Arts and Sciences, University of Arkansas, Fayetteville, Arkansas 72701, United States.

Center for Applied Mathematics (CERMICS), Ecole des Ponts ParisTech, Champs sur Marne, 77455 France.

出版信息

J Chem Theory Comput. 2020 Dec 8;16(12):7328-7341. doi: 10.1021/acs.jctc.0c00123. Epub 2020 Nov 10.

Abstract

Several methods of constructing the active orbital space for multiconfigurational wave functions are compared on typical moderately strongly or strongly correlated ground-state molecules. The relative merits of these methods and problems inherent in multiconfigurational calculations are discussed. Strong correlation in the ground electronic state is found typically in larger conjugated and in antiaromatic systems, transition states which involve bond breaking or formation, and transition metal complexes. Our examples include polyenes, polyacenes, the reactant, product and transition state of the Bergman cyclization, and two transition metal complexes: Hieber's anion [(CO)FeNO] and ferrocene. For the systems investigated, the simplest and oldest selection method, based on the fractional occupancy of unrestricted Hartree-Fock natural orbitals (the UNO criterion), yields the same active space as much more expensive approximate full CI methods. A disadvantage of this method used to be the difficulty of finding broken spin symmetry UHF solutions. However, our analytical method, accurate to fourth order in the orbital rotation angles (Tóth and Pulay 2016, 145, 164102.), has solved this problem. Two further advantages of the UNO criterion are that, unlike most other methods, it measures not only the energetic proximity to the Fermi level but also the magnitude of the exchange interaction with strongly occupied orbitals and therefore allows the estimation of the correlation strength for orbital selection in Restricted Active Space methods.

摘要

在典型的中等强度或强关联基态分子上,比较了构建多组态波函数活性轨道空间的几种方法。讨论了这些方法的相对优点以及多组态计算中固有的问题。通常在较大的共轭体系和反芳香体系、涉及键断裂或形成的过渡态以及过渡金属配合物中发现基态电子态的强关联。我们的例子包括多烯、多并苯、伯格曼环化反应的反应物、产物和过渡态,以及两种过渡金属配合物:希贝尔阴离子[(CO)FeNO]和二茂铁。对于所研究的体系,基于无限制Hartree-Fock自然轨道的分数占据(UNO准则)这一最简单且最古老的选择方法,产生的活性空间与成本高得多的近似完全CI方法相同。这种方法过去的一个缺点是难以找到破缺自旋对称性的UHF解。然而,我们的解析方法在轨道旋转角度上精确到四阶(Tóth和Pulay,2016,145,164102.),已经解决了这个问题。UNO准则的另外两个优点是,与大多数其他方法不同,它不仅测量与费米能级的能量接近程度,还测量与强占据轨道的交换相互作用的大小,因此允许在受限活性空间方法中估计用于轨道选择的关联强度。

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