School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, P. R. China.
School of Sciences, Zhejiang Sci-Tech University, Hangzhou 310018, P. R. China.
Org Lett. 2020 Aug 7;22(15):5958-5962. doi: 10.1021/acs.orglett.0c02048. Epub 2020 Jul 14.
Over the last 16 years, chiral phosphoric acids (CPAs) have been shown to be excellent asymmetric catalysts, very effectively used in constructing chiral molecules with high enantiocontrol. In 2010, Ishihara et al. discovered that chiral metal phosphate complexes (or salts) could be found in substantial quantities, as contaminates, in some reported CPA-catalyzed reactions (Hatano, M.; Moriyama, K.; Maki, T.; Ishihara, K. 2010, 49, 3823-3826). These metal phosphates were shown to actually catalyze the reactions in addition to CPAs. In this work, we have investigated in depth a reaction first reported to be catalyzed by CPAs based on a vaulted bis-phenanthrol (VAPOL) backbone. We have found that VAPOL metal phosphates were, in fact, superior catalysts for this reaction. Upon optimization, a wide substrate scope, low catalyst loading, and mild conditions could provide intermolecular imine amidation reactions producing chiral ,'-aminal products in high yields and with excellent values (up to >99% yield, >99% ).
在过去的 16 年中,手性磷酸已被证明是出色的不对称催化剂,可非常有效地用于构建具有高对映选择性的手性分子。2010 年,Ishihara 等人发现,手性金属磷酸盐配合物(或盐)在一些报道的 CPAs 催化反应中以大量杂质的形式存在(Hatano,M.;Moriyama,K.;Maki,T.;Ishihara,K. 2010,49,3823-3826)。这些金属磷酸盐除了 CPAs 外还被证明可以实际催化反应。在这项工作中,我们深入研究了最初报道基于穹顶双菲咯啉(VAPOL)骨架的 CPAs 催化的反应。我们发现,VAPOL 金属磷酸盐实际上是该反应的更好催化剂。经过优化,宽底物范围、低催化剂负载和温和的条件可以提供分子间亚胺酰胺化反应,以高产率和优异的 值(高达 >99%的产率,>99%)生成手性,'-亚胺产物。