Organisch-Chemisches Institut, Westfälische Wilhelms-Universität, Corrensstrasse 40, 48149 Münster, Germany.
J Org Chem. 2011 Nov 4;76(21):8794-806. doi: 10.1021/jo201521v. Epub 2011 Oct 11.
2,6-Diazaheptatrienyl metal compounds 6(-)K(+) are easily accessible from the corresponding diimines 6 by deprotonation using KO-t-Bu as base. According to quantum chemical calculations, they are, in comparison to other isomeric species with nitrogen atoms in other positions, highly reactive intermediates, which undergo in dilute solution at 50 °C ring closure reactions to form 3-aminoindole derivatives 8/10. In contrast, in more concentrated solution at room temperature, the formation of 14-membered macrocyclces 13 as a result of formal dimerization is observed. The 3-aminoindole derivatives obtained in this work possess rare substitution patterns, and the macrocyclic compounds are essentially unknown. Two-fold vinylogous derivatives 7 give rise to tricyclic systems with δ-carboline backbone 12. The experimental results are interpreted using high-level DFT calculations with regard to the possible reaction mechanism and the nature of the transition state of the five-membered ring formation. The molecular structures in the solid state of all types of compounds were elucidated by X-ray diffraction.
2,6-二氮杂庚三烯金属化合物 6(-)K(+) 可通过使用 KO-t-Bu 作为碱对相应的二亚胺 6 进行脱质子化作用轻易地得到。根据量子化学计算,与具有其他位置氮原子的其他异构体相比,它们是高反应性的中间体,在稀溶液中于 50°C 下进行环闭合反应,形成 3-氨基吲哚衍生物 8/10。相比之下,在室温下浓度更高的溶液中,观察到形成 14 元大环 13,这是由于形成了形式上的二聚体。在这项工作中获得的 3-氨基吲哚衍生物具有罕见的取代模式,并且大环化合物基本上是未知的。双烯酮类似物 7 生成具有 δ-咔啉骨架 12 的三环体系。使用高水平 DFT 计算来解释实验结果,涉及可能的反应机制和五元环形成的过渡态的性质。通过 X 射线衍射阐明了所有类型化合物在固态中的分子结构。