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伯格曼环化反应的从头算研究

An ab Initio Exploration of the Bergman Cyclization.

作者信息

Luxon Adam R, Orms Natalie, Kanters René, Krylov Anna I, Parish Carol A

机构信息

Department of Chemistry, University of Richmond , Richmond, Virginia 23173, United States.

Department of Chemistry, University of Southern California , Los Angeles, California 90089, United States.

出版信息

J Phys Chem A. 2018 Jan 11;122(1):420-430. doi: 10.1021/acs.jpca.7b10576. Epub 2017 Dec 29.

Abstract

The Bergman cyclization is an important reaction in which an enediyne cyclizes to produce a highly reactive diradical species, p-benzyne. Enediyne motifs are found in natural antitumor antibiotic compounds, such as calicheammicin and dynemicin. Understanding the energetics of cyclization is required to better control the initiation of the cyclization, which induces cell death. We computed the singlet and triplet potential energy surfaces for the Bergman cyclization of (Z)-hex-3-ene-1,5-diyne using the CCSD and EOM-SF-CCSD methods. The triplet enediyne and transition state were found to have C symmetry, which contrasts with the singlet reactant and transition state that possess C symmetry. We analyzed the frontier orbitals of both cyclization pathways to explain the large energetic barrier of the triplet cyclization. Reaction energies were calculated using CCSD(T)/cc-pVTZ single-point calculations on structures optimized with CCSD/cc-pVDZ. The singlet reaction was found to be slightly endothermic (ΔH = 13.76 kcal/mol) and the triplet reaction was found to be highly exothermic (ΔH = -33.29 kcal/mol). The adiabatic singlet-triplet gap of p-benzyne, computed with EOM-SF-CCSD/cc-pVTZ, was found to be 3.56 kcal/mol, indicating a singlet ground state.

摘要

伯格曼环化反应是一种重要的反应,其中烯二炔环化生成高活性的双自由基物种对苯炔。烯二炔结构单元存在于天然抗肿瘤抗生素化合物中,如加利车霉素和力达霉素。为了更好地控制诱导细胞死亡的环化反应的起始,需要了解环化反应的能量学。我们使用CCSD和EOM-SF-CCSD方法计算了(Z)-己-3-烯-1,5-二炔的伯格曼环化反应的单重态和三重态势能面。发现三重态烯二炔和过渡态具有C对称性,这与具有C对称性的单重态反应物和过渡态形成对比。我们分析了两种环化途径的前沿轨道,以解释三重态环化反应的高能垒。反应能量是在使用CCSD/cc-pVDZ优化的结构上,通过CCSD(T)/cc-pVTZ单点计算得到的。发现单重态反应略微吸热(ΔH = 13.76 kcal/mol),而三重态反应则高度放热(ΔH = -33.29 kcal/mol)。使用EOM-SF-CCSD/cc-pVTZ计算得到的对苯炔的绝热单重态-三重态能隙为3.56 kcal/mol,表明其基态为单重态。

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