Schmid Steven C, Guzei Ilia A, Fernández Israel, Schomaker Jennifer M
Department of Chemistry, University of Wisconsin, Madison, Wisconsin 53706, United States.
Departamento de Química Organica I and Centro de Innovacioń en Química Avazanda (ORFEO-CINQA), Facultad de Ciencias Químicas, Universidad Complutense de Madrid, 28040 Madrid, Spain.
ACS Catal. 2018 Sep 7;8(9):7907-7914. doi: 10.1021/acscatal.8b02206. Epub 2018 Jul 17.
The synthesis of densely functionalized azetidinesin a highly stereocontrolled manner is challenging, but interest in the bioactivities of these small heterocycles has stimulated methods for their preparation. We recently reported a one-carbon ring expansion of bicyclic methylene aziridines under dirhodium catalysis capable of delivering enantioenriched azetidines. This work explores this ring expansion using computational and experimental studies. DFT computations indicate that the reaction proceeds through formation of an aziridinium ylide, which is precisely poised for concerted, asynchronous ring-opening/closing to deliver the azetidines in a [2,3]-Stevens-type rearrangement. The concerted nature of this rearrangement is responsible for the stereospecificity of the reaction, where axial chirality from the initial allene substrate is transferred to the azetidine product with complete fidelity. The computed mechanistic pathway highlights the key roles of the olefin and the rigid structure of the methylene aziridine in differentiating our observed ring expansion from competing cheletropic elimination pathways noted with ylides derived from typical aziridines.
以高度立体控制的方式合成密集功能化的氮杂环丁烷具有挑战性,但对这些小杂环生物活性的关注激发了其制备方法的研究。我们最近报道了在二铑催化下双环亚甲基氮丙啶的单碳环扩展反应,该反应能够生成对映体富集的氮杂环丁烷。这项工作通过计算和实验研究探索了这种环扩展反应。密度泛函理论(DFT)计算表明,反应通过氮丙啶叶立德的形成进行,该叶立德恰好为协同、异步的开环/闭环反应做好准备,从而以[2,3]-史蒂文斯型重排反应生成氮杂环丁烷。这种重排反应的协同性质决定了反应的立体专一性,其中初始丙二烯底物的轴手性以完全保真的方式转移到氮杂环丁烷产物中。计算得到的反应机理途径突出了烯烃和亚甲基氮丙啶的刚性结构在区分我们观察到的环扩展反应与典型氮丙啶衍生的叶立德所涉及的竞争性螯变消除途径中的关键作用。