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吡嗪双自由基异构体的多参考从头算研究。

A Multireference Ab Initio Study of the Diradical Isomers of Pyrazine.

作者信息

Scott Thais, Nieman Reed, Luxon Adam, Zhang Boyi, Lischka Hans, Gagliardi Laura, Parish Carol A

机构信息

Department of Chemistry, Gottwald Center for the Sciences , University of Richmond , Richmond Virginia 23713 , United States.

Department of Chemistry, Chemical Theory Center and the Minnesota Supercomputing Institute , The University of Minnesota , Minneapolis , Minnesota 55455 , United States.

出版信息

J Phys Chem A. 2019 Mar 14;123(10):2049-2057. doi: 10.1021/acs.jpca.8b12440. Epub 2019 Mar 4.

Abstract

Three diradical pyrazine isomers were characterized using highly correlated, multireference methods. The lowest lying singlet and triplet state geometries of 2,3-didehydropyrazine ( ortho), 2,5-didehydropyrazine ( para), and 2,6-didehydropyrazine ( meta) were determined. Two active reference spaces were utilized. The complete active space (CAS) (8,8) includes the σ and σ* orbitals on the dehydrocarbon atoms as well as the valence π and π* orbitals. The CAS (12,10) reference space includes two additional orbitals corresponding to the in-phase and out-of-phase nitrogen lone pair orbitals. Adiabatic and vertical gaps between the lowest lying singlet and triplet states, optimized geometries, canonicalized orbital energies, unpaired electron densities, and spin polarization effects were compared. We find that the singlet states of each diradical isomer contain two significantly weighted configurations, and the larger active space is necessary for the proper physical characterization of both the singlet and triplet states. The singlet-triplet splitting is very small for the 2,3-didehydropyrazine ( ortho) and 2,6-didehydropyrazine ( meta) isomers (+1.8 and -1.4 kcal/mol, respectively) and significant for the 2,5-didehydropyrazine ( para) isomer (+28.2 kcal/mol). Singlet geometries show through-space interactions between the dehydocarbon atoms in the 2,3-didehydropyrazine ( ortho) and 2,6-didehydropyrazine ( meta) isomers. An analysis of the effectively unpaired electrons suggests that the 2,5-didehydropyrazine ( para) isomer also displays through-bond coupling between the diradical electrons.

摘要

使用高度相关的多参考方法对三种双自由基吡嗪异构体进行了表征。确定了2,3 - 二脱氢吡嗪(邻位)、2,5 - 二脱氢吡嗪(对位)和2,6 - 二脱氢吡嗪(间位)的最低单重态和三重态几何结构。使用了两个活性参考空间。完全活性空间(CAS)(8,8)包括脱氢碳原子上的σ和σ轨道以及价π和π轨道。CAS(12,10)参考空间包括另外两个对应于同相和异相氮孤对轨道的轨道。比较了最低单重态和三重态之间的绝热和垂直能隙、优化的几何结构、正则化轨道能量、未成对电子密度和自旋极化效应。我们发现每个双自由基异构体的单重态包含两个显著加权的构型,并且较大的活性空间对于单重态和三重态的正确物理表征是必要的。2,3 - 二脱氢吡嗪(邻位)和2,6 - 二脱氢吡嗪(间位)异构体的单重态 - 三重态分裂非常小(分别为 +1.8和 -1.4 kcal/mol),而2,5 - 二脱氢吡嗪(对位)异构体的分裂则很显著(+28.2 kcal/mol)。单重态几何结构显示出2,3 - 二脱氢吡嗪(邻位)和2,6 - 二脱氢吡嗪(间位)异构体中脱氢碳原子之间的空间相互作用。对有效未成对电子的分析表明,2,5 - 二脱氢吡嗪(对位)异构体的双自由基电子之间也表现出通过键的耦合。

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