Department of Chemistry, North Carolina State University, 2620 Yarbrough Drive, Raleigh, NC, 27695, USA.
Angew Chem Int Ed Engl. 2020 Oct 12;59(42):18655-18661. doi: 10.1002/anie.202006786. Epub 2020 Aug 18.
Cyclopropanone derivatives have long been considered unsustainable synthetic intermediates because of their extreme strain and kinetic instability. Reported here is the enantioselective synthesis of 1-sulfonylcyclopropanols, as stable yet powerful equivalents of the corresponding cyclopropanone derivatives, by α-hydroxylation of sulfonylcyclopropanes using a bis(silyl) peroxide as the electrophilic oxygen source. This work constitutes the first general approach to enantioenriched cyclopropanone derivatives. Both the electronic and steric nature of the sulfonyl moiety, which serves as a base-labile protecting group and confers crystallinity to these cyclopropanone precursors, were found to have a crucial impact on the rate of equilibration to the corresponding cyclopropanone. The utility of these cyclopropanone surrogates is demonstrated in a mild and stereospecific formal [3+1] cycloaddition with simple hydroxylamines, leading to the efficient formation of chiral β-lactam derivatives.
环丙酮衍生物由于其极大的张力和动力学不稳定性,长期以来被认为是不可持续的合成中间体。本文报道了通过双(硅基)过氧化物作为亲电氧源对砜基环丙烷进行α-羟化反应,将稳定而强大的 1-磺酰基环丙醇作为相应环丙酮衍生物的等价物进行对映选择性合成。这项工作构成了对映富集环丙酮衍生物的第一种通用方法。砜基作为碱不稳定的保护基团,并赋予这些环丙酮前体结晶性,其电子和空间性质被发现对平衡到相应的环丙酮的速率有至关重要的影响。这些环丙酮替代物在与简单羟胺的温和和立体特异性的形式[3+1]环加成反应中的用途得到了证明,导致手性β-内酰胺衍生物的有效形成。