Yuan Lang, Jia Cai-Xin, Qu Hong-Jie, Chi Yu-Juan, Yu Hai-Tao
Key Laboratory of Functional Inorganic Material Chemistry (Ministry of Education) and School of Chemistry and Materials Science , Heilongjiang University , Harbin 150080 , P. R. China.
J Org Chem. 2019 Mar 1;84(5):2721-2731. doi: 10.1021/acs.joc.8b03134. Epub 2019 Feb 11.
In this study, we performed a theoretical investigation of the intramolecular cyclization of bicyclic 2-allyl-2-methyl-2,3-dihydro-1 H-inden-1-iminyl radical 1 along with several iminyl model compounds. The results were used to comparatively evaluate the reaction mechanism suggested previously, in which the neophyl-like rearrangement was deemed to play a decisive role. The present computation and numerical simulation identify the experimentally observed endo product in the high-temperature cyclization of 1. The product results from a kinetically controlled endo cyclization-reduction pathway involving an initial reversible 5- exo ring-closure/ring-opening process, not via 5- exo cyclization/neophyl-like rearrangement/ endo-radical reduction pathway as proposed previously. Considering many available theoretical and experimental results, the neophyl-like rearrangement seems to play only a minor role in the intramolecular cyclization of N- and C-centered radicals. The structural effect of cyclized radical intermediates of bicyclic 1 leads to a lower thermodynamic reaction energy of exo cyclization than of endo cyclization, which together with the temperature effect should be responsible for the formation of the dominant endo product in the high-temperature region. Additionally, this investigation provided further insight into the cyclization of 1 and compounds structurally similar to 1; that is, control of endo- or exo-regioselective products is readily available by regulating the reaction temperature.
在本研究中,我们对双环2-烯丙基-2-甲基-2,3-二氢-1H-茚-1-亚胺基自由基1以及几种亚胺基模型化合物的分子内环化进行了理论研究。研究结果用于对先前提出的反应机理进行比较评估,在该机理中,新戊基型重排被认为起决定性作用。目前的计算和数值模拟确定了在1的高温环化中实验观察到的内型产物。该产物来自动力学控制的内型环化-还原途径,该途径涉及初始的可逆5-外向环化/开环过程,而不是如先前提出的通过5-外向环化/新戊基型重排/内型自由基还原途径。考虑到许多现有的理论和实验结果,新戊基型重排在N-中心和C-中心自由基的分子内环化中似乎只起次要作用。双环1的环化自由基中间体的结构效应导致外向环化的热力学反应能量低于内向环化,这与温度效应共同导致了高温区域中主要内型产物的形成。此外,该研究进一步深入了解了1和与1结构相似的化合物的环化;也就是说,通过调节反应温度可以很容易地控制内型或外型区域选择性产物。