Ondari Mark E, Klosin Jerzy, Kruper William R, Lysenko Ivan, Thomas Pulikkottil J, Cheng Kevin, Abboud Khalil A, Kruper William J
Corteva Agriscience, 1710 Building, Midland, Michigan 48674, United States.
Corporate R&D, The Dow Chemical Company, 1776 Building, Midland, Michigan 48674, United States.
J Org Chem. 2022 Feb 18;87(4):2063-2074. doi: 10.1021/acs.joc.1c01475. Epub 2021 Sep 28.
The well-known epoxide-Ritter reaction generally affords oxazolines with poor to average regioselectivity. Herein, a mechanism-based study of the less known diol-Ritter reaction has provided a highly regioselective procedure for the synthesis of 1--amido-2-esters from either terminal epoxides or 1,2-diols via Lewis acid-catalyzed monoesterification. When treated with a stoichiometric Lewis acid catalyst (BF), these diol monoesters form dioxonium cation intermediates that are ring-opened with nitrile nucleophiles to form nitrilium intermediates, which undergo rapid and irreversible hydration to give the desired amidoesters. Diester byproduct formation is irreversible and appears to occur through disproportionation of diol monoester. With chiral epoxide starting materials, the formation of amidoester occurs with retention of configuration and no apparent erosion of optical purity as determined by single-crystal X-ray analyses and chiral chromatography, respectively. The direct access to chiral -amidoesters is especially practical with regard to the synthesis of antibacterial oxazolidinone analogues of the Zyvox antimicrobial family.
著名的环氧化物-里特反应通常生成区域选择性较差至中等的恶唑啉。在此,对鲜为人知的二醇-里特反应进行的基于机理的研究提供了一种高度区域选择性的方法,可通过路易斯酸催化的单酯化反应从末端环氧化物或1,2-二醇合成1-酰胺基-2-酯。当用化学计量的路易斯酸催化剂(BF)处理时,这些二醇单酯形成二氧鎓阳离子中间体,该中间体与腈亲核试剂发生开环反应形成腈鎓中间体,腈鎓中间体迅速且不可逆地水合生成所需的酰胺酯。二酯副产物的形成是不可逆的,似乎是通过二醇单酯的歧化反应发生的。使用手性环氧化物起始原料时,酰胺酯的形成具有构型保持,并且通过单晶X射线分析和手性色谱法分别测定,光学纯度没有明显下降。就合成Zyvox抗菌家族的抗菌恶唑烷酮类似物而言,直接获得手性β-酰胺酯特别实用。