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Local Energy Decomposition of Open-Shell MolecularSystems in the Domain-Based Local Pair Natural Orbital Coupled ClusterFramework

机译:开壳分子的局部能分解基于域的本地对自然轨道耦合集群中的系统构架

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摘要

Local energy decomposition (LED) analysis decomposes the interaction energy between two fragments calculated at the domain-based local pair natural orbital CCSD(T) (DLPNO-CCSD(T)) level of theory into a series of chemically meaningful contributions and has found widespread applications in the study of noncovalent interactions. Herein, an extension of this scheme that allows for the analysis of interaction energies of open-shell molecular systems calculated at the UHF-DLPNO-CCSD(T) level is presented. The new scheme is illustrated through applications to the CH2···X (X = He, Ne, Ar, Kr, and water) and heme···CO interactions in the low-lying singlet and triplet spin states. The results are used to discuss the mechanism that governs the change in the singlet–triplet energy gap of methylene and heme upon adduct formation.
机译:局部能量分解(LED)分析将在基于域的局部对自然轨道CCSD(T)(DLPNO-CCSD(T))的理论水平上计算出的两个片段之间的相互作用能分解为一系列具有化学意义的贡献,并且发现了广泛的意义。在非共价相互作用研究中的应用。在此,提出了该方案的扩展,该扩展允许分析以UHF-DLPNO-CCSD(T)水平计算的开壳分子系统的相互作用能。通过在低单线态和三线态自旋态下对CH2·X(X = He,Ne,Ar,Kr和水)和血红素·CO相互作用的应用说明了该新方案。结果用于讨论控制加合物形成时亚甲基和血红素的单重态-三重态能隙变化的机理。

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