Kondoh Azusa, Terada Masahiro
Research and Analytical Center for Giant Molecules, Graduate School of Science, Tohoku University, Aoba-ku, Sendai 980-8578, Japan.
Org Biomol Chem. 2016 May 18;14(20):4704-11. doi: 10.1039/c6ob00739b.
A three-component coupling reaction of α-ketoesters, imines, and diethyl phosphite under Brønsted base catalysis was developed by utilizing the [1,2]-phospha-Brook rearrangement. The reaction involves the generation of ester enolates via the umpolung process, i.e., the chemoselective addition of diethyl phosphite to α-ketoesters followed by the [1,2]-phospha-Brook rearrangement, and the trapping of the resulting enolates by imines preferentially over α-ketoesters and protons. This operationally simple reaction can provide densely functionalized β-amino acid derivatives including an oxygen functionality at the α-position in good yields. The diastereoselectivity is highly dependent on the substrates and reaction temperature, which is attributed to the reversibility of the addition of the ester enolates to the imines. The methodology was further extended to the reaction of α-ketoesters, β-nitrostyrenes, and diethyl phosphite.
通过利用[1,2]-磷杂-Brook重排,开发了一种在布朗斯特碱催化下α-酮酯、亚胺和亚磷酸二乙酯的三组分偶联反应。该反应涉及通过极性翻转过程生成酯烯醇盐,即亚磷酸二乙酯对α-酮酯的化学选择性加成,随后进行[1,2]-磷杂-Brook重排,以及所得烯醇盐优先被亚胺捕获而非α-酮酯和质子。这种操作简单的反应能够以良好的产率提供在α位包含氧官能团的高度官能化的β-氨基酸衍生物。非对映选择性高度依赖于底物和反应温度,这归因于酯烯醇盐加成到亚胺上的可逆性。该方法进一步扩展到α-酮酯、β-硝基苯乙烯和亚磷酸二乙酯的反应。