Max-Planck-Institut für Kohlenforschung, Mülheim an der Ruhr, Germany.
School of Chemical and Biological Sciences, IIT Goa, Ponda, India.
Nat Chem. 2020 Dec;12(12):1174-1179. doi: 10.1038/s41557-020-00558-1. Epub 2020 Sep 28.
Carbocations can be categorized into classical carbenium ions and non-classical carbonium ions. These intermediates are ubiquitous in reactions of both fundamental and practical relevance, finding application in the petroleum industry as well as the discovery of new drugs and materials. Conveying stereochemical information to carbocations is therefore of interest to a range of chemical fields. While previous studies targeted systems proceeding through classical ions, enantiocontrol over their non-classical counterparts has remained unprecedented. Here we show that strong and confined chiral acids catalyse enantioselective reactions via the non-classical 2-norbornyl cation. This reactive intermediate is generated from structurally different precursors by leveraging the reactivity of various functional groups to ultimately deliver the same enantioenriched product. Our work demonstrates that tailored catalysts can act as suitable hosts for simple, non-functionalized carbocations via a network of non-covalent interactions. We anticipate that the methods described herein will provide catalytic accessibility to valuable carbocation systems.
碳正离子可以分为经典碳正离子和非经典碳正离子。这些中间体在基础和实际相关的反应中无处不在,在石油工业、新药和新材料的发现中都有应用。因此,向碳正离子传递立体化学信息引起了一系列化学领域的关注。虽然之前的研究针对的是通过经典离子进行的体系,但对其非经典对应物的对映选择性控制仍然是前所未有的。在这里,我们表明强而受限的手性酸通过非经典的 2-降冰片基阳离子催化对映选择性反应。通过利用各种官能团的反应性,从结构不同的前体中生成这种反应性中间体,最终得到相同的对映体富集产物。我们的工作表明,定制的催化剂可以通过非共价相互作用网络作为简单的、非功能化的碳正离子的合适主体。我们预计本文所述的方法将为有价值的碳正离子体系提供催化可及性。