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杂原子导向的仲醇酰化反应用于确定绝对构型。

Heteroatom-Directed Acylation of Secondary Alcohols To Assign Absolute Configuration.

机构信息

Department of Chemistry, 1102 Natural Sciences II, University of California at Irvine , Irvine, California 92697, United States.

出版信息

J Org Chem. 2018 Mar 2;83(5):2504-2515. doi: 10.1021/acs.joc.7b03156. Epub 2018 Feb 9.

Abstract

Birman's HBTM catalyst is effective for the enantioselective acylation and kinetic resolution of benzylic secondary alcohols. The enantioselective acylation has now been extended to secondary alcohols bearing electron-withdrawing groups such as halides and other heteroatoms. The level of selectivity is modest to good and is sufficient for determining configuration using the competing enantioselective conversion method. A mathematical analysis identifies conditions for achieving maximum differences in conversion and, consequently, assigning configuration with greater confidence. The new method is effective for halohydrins and secondary-tertiary 1,2-diols and was used to confirm the configuration of two inoterpene natural products.

摘要

比曼手性双氮氧配体(HBTM)催化剂可有效用于对映选择性酰化和动力学拆分苄基仲醇。对映选择性酰化现已扩展到具有吸电子基团(如卤素和其他杂原子)的仲醇。选择性水平为中等至良好,足以使用竞争的对映选择性转化方法确定构型。数学分析确定了实现最大转化率差异的条件,从而更有信心地分配构型。该新方法对卤代醇和仲-叔 1,2-二醇有效,并用于确认两种异萜天然产物的构型。

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