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Theoretical Studies on the Mechanism of the Formation of Cyclopentadienes and Dihydropyridazines

机译:关于环戊烯和二氢吡啶嗪形成机制的理论研究

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摘要

The synthesis of cyclopentadiene derivatives via the domino reaction of norbornadienes with dimethyl 1,2,4,5-tetrazine-3,6- dicarboxylate, followed a retro-Diels-Alder reaction, was re- ported by Dalkili? few years ago (Tetrahedron 2015;71:1966). In some cases, the formation of an unexpected dihydropyridazine (DHP) was observed, and explained by a 1,3-hydrogen shift. A density functional theory study is herein reported giving insights into the proposed mechanisms with different substitu- ents on norbornadiene. Based on the kinetic and thermody- namic data, the retro-Diels-Alder reaction is confirmed to explain the formation of cyclopentadienes plus pyridazines. The intramolecular 1,3-hydrogen shift mechanism was not sufficient to explain the exclusive formation of two DHPs. Thus, an alternative mechanism involving a stepwise tautomerisation is being reported for formation of DHPs.
机译:通过甲基二烯与二甲基1,2,4,5-四嗪-3,6-二羧酸酯的多甲基反应合成环戊二烯衍生物,随后是复古二烷基反应,由dalkili重新命名? 几年前(Tetrahedron 2015; 71:1966)。 在某些情况下,观察到了意外的二氢吡嗪(DHP)的形成,并通过1,3-氢化的解释进行了解释。 在本文中,一项密度功能理论研究的据报道,洞察了对诺伯烯的不同取代基的提议机制。 基于动力学和热数数据,证实了复古二烷 - alder反应以解释环戊烷和吡啶嗪的形成。 分子内1,3-氢移位机制不足以解释两个DHP的独家形成。 因此,报道了涉及逐步互构化的替代机制以形成DHP。

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