Computational Study of Ignored Pericyclic Reactions: Rearrangements of 1,2-Bis(Diazo)Alkanes to 1,2,3,4-Tetrazines and Subsequent Fragmentations.

IF 16.9
Hans-Ulrich Reissig, Ernst-Ulrich Würthwein
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Abstract

An electrocyclic ring closure of bis-1,3-dipoles can afford six-membered heterocycles. This 8π-electron process was systematically analyzed by DFT calculations with 1,2-bis(diazo)alkane derivatives as possible precursor compounds and 1,2,3,4-tetrazines as products. The C2-symmetry of the transition state of the parent system points to a conrotatory ring closing event. The subsequent (6-2-2) cycloreversions of these elusive nitrogen-rich heterocycles to alkynes or nitriles and dinitrogen were also computationally investigated. The results show that the reactions are strongly dependent on the substitution pattern, but all are kinetically easily feasible delivering products of differing stability. The calculations can therefore provide important information for experimental endeavors to generate or even isolate so far unknown 1,2,3,4-tetrazines. The feasibility of carbene or 1,2,3-triazolyl-substituted nitrene intermediates for the formation of alkynes is also discussed. The experimental evidence for the proposed processes is enclosed presenting literature known examples of the fragmentation reactions which can most convincingly be explained by the intermediacy of 1,2,3,4-tetrazine derivatives. Furthermore, the electrocyclic ring closure reactions of five other types of bis-1,3-dipoles are calculated, demonstrating that this so far ignored 8π-electrocyclization process can establish a new route to interestingly composed heterocyclic compounds.

被忽略的周环反应的计算研究:1,2-双(重氮)烷烃重排到1,2,3,4-四嗪和随后的断裂。
双-1,3偶极子的电环闭合可以形成六元杂环。以1,2-二(重氮)烷烃衍生物为前体化合物,1,2,3,4-四嗪为产物,通过DFT计算系统地分析了这一8π电子过程。父系统过渡状态的c2对称性指向一个控制环闭合事件。这些难以捉摸的富氮杂环随后的(6-2-2)环还原为炔或腈和二氮也进行了计算研究。结果表明,这些反应强烈依赖于取代模式,但所有反应在动力学上都很容易实现,并产生不同稳定性的产物。因此,计算可以为生成甚至分离迄今未知的1,2,3,4-四嗪的实验努力提供重要信息。讨论了用碳或1,2,3-三唑基取代亚硝基中间体生成炔烃的可行性。所提出的过程的实验证据附上了已知的断裂反应的文献例子,这些反应可以最令人信服地用1,2,3,4-四嗪衍生物的中间体来解释。此外,还计算了其他五种双-1,3偶极子的电环闭合反应,证明了这一迄今为止被忽视的8π电环化过程可以为合成有趣的杂环化合物开辟一条新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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