Department of Chemistry, University of Michigan, Ann Arbor, MI 48109 (USA).
Angew Chem Int Ed Engl. 2014 Oct 13;53(42):11194-8. doi: 10.1002/anie.201405128. Epub 2014 Sep 4.
An enantioselective intramolecular chiral phosphoric acid-catalyzed cyclization of unsaturated acetals has been utilized for the synthesis of functionalized chiral piperidines. The chiral enol ether products of these cyclizations undergo subsequent in situ enantioenrichment through acetalization of the minor enantiomer. A new computational reaction exploration method was utilized to elucidate the mechanism and stereoselectivity of this transformation. Rather than confirming the originally postulated cyclization proceeding directly through a vinyl oxocarbenium ion, simulations identified an alternative two-step mechanism involving the formation of a mixed chiral phosphate acetal, which undergoes a concerted, asynchronous S(N)2'-like displacement to yield the product with stereoselectivity in agreement with experimental observations.
一种对映选择性的手性磷酸催化的不饱和缩醛的分子内环化反应被用于功能化手性哌啶的合成。这些环化反应的手性烯醇醚产物通过较小对映异构体的缩醛化作用进行后续的原位对映体富集。一种新的计算反应探索方法被用于阐明这种转化的机制和立体选择性。模拟结果并没有证实最初假设的环化反应直接通过乙烯基氧碳正离子进行,而是确定了一种替代的两步机制,涉及到形成混合手性磷酸缩醛,该缩醛通过协同的、异步的 S(N)2'-样取代反应生成与实验观察一致的立体选择性产物。