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Studies on the Formal [3+2] Cycloaddition of Aziridines with Alkenes for the Synthesis of 1-Azaspiroalkanes

机译:氮丙啶与烯烃的形式[3 + 2]环加成反应合成1-氮杂螺烷的研究

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摘要

The Lewis acid-mediated [3 + 2] cycloaddition of N-sulfonyl- and N-sulfamoylaziridines with alkenes provides a rapid and efficient access to 1-azaspiro[4.n]alkanes. Experimental studies have been combined with DFT calculations to explore the mechanism of the reaction. They demonstrate that the nature of the electron-withdrawing nitrogen protecting group has a very limited influence on the course of the reaction and, particularly, on the initial formation of the 1,3-zwitterionic species through C-N bond cleavage, which has been found to be the rate-determining step. Compared to N-sulfonylaziridines, N-sulfamoylaziridines have proved to be more synthetically useful synthons that afford crystalline polycyclic structures in good yields. A short sequence of catalytic C(sp(3))-H aminationcyclization[3 + 2] cycloaddition has then been successfully designed to afford the homologue 1-azaspiro[5.n]alkanes, thereby illustrating the higher versatility of sulfamates in these cycloadditions.
机译:刘易斯酸介导的N-磺酰基-和N-氨磺酰基氮丙啶与烯烃的[3 + 2]环加成反应提供了快速高效地合成1-azaspiro [4.n]烷烃的途径。实验研究已与DFT计算相结合,以探索反应的机理。他们证明吸电子氮保护基的性质对反应过程的影响非常有限,尤其是通过CN键断裂对1,3-两性离子物种的初始形成的影响非常有限。是确定速率的步骤。与N-磺酰基氮丙啶相比,N-氨磺酰基氮丙啶已被证明是合成上更有用的合成子,其以良好的产率提供了结晶多环结构。然后已成功设计了短序列的催化C(sp(3))-H氨基环化[3 + 2]环加成反应,以提供同源的1-azaspiro [5.n]烷烃,从而说明了氨基磺酸酯在这些环加成反应中具有更高的通用性。

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