Kamlar Martin, Urban Michal, Veselý Jan
Charles University Faculty of Science: Univerzita Karlova Prirodovedecka fakulta, Prague, CZECH REPUBLIC.
Chem Rec. 2023 Jul;23(7):e202200284. doi: 10.1002/tcr.202200284. Epub 2023 Jan 26.
Over the last ten years, the combination of organocatalysis with transition metal (TM) catalysis has become one of the most important toolboxes used for synthesizing optically pure compounds containing chiral quaternary centers, including spiro heterocyclic molecules. The dominant method in the enantioselective synthesis of spiro heterocyclic compounds based on synergistic catalysis includes chiral aminocatalysis and NHC catalysis, as already established covalent organocatalytic strategies. Another area of organocatalysis widely combined with TM catalysis producing enantiomerically enriched spiro heterocyclic compounds is non-covalent catalysis, dominated by chiral phosphoric acids, thiourea, and squaramide derivatives. This review article aims to summarize enantioselective methods used for constructing spirocyclic heterocycles based on a combination of organocatalysis and transition metal catalysis.
在过去十年中,有机催化与过渡金属(TM)催化相结合已成为合成含手性季碳中心的光学纯化合物(包括螺杂环分子)最重要的工具箱之一。基于协同催化的螺杂环化合物对映选择性合成的主要方法包括手性氨基催化和NHC催化,这是已确立的共价有机催化策略。有机催化与TM催化广泛结合以产生对映体富集的螺杂环化合物的另一个领域是非共价催化,其主要由手性磷酸、硫脲和方酰胺衍生物主导。这篇综述文章旨在总结基于有机催化和过渡金属催化相结合构建螺环杂环的对映选择性方法。