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Exploring the Scope of Tandem Palladium and Isothiourea Relay Catalysis for the Synthesis of α-Amino Acid Derivatives

机译:探索串联钯和异硫脲中继催化合成α-氨基酸衍生物的范围

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摘要

The scope and limitations of a tandem N-allylation/[2,3]-rearrangement protocol are investigated through the incorporation of a variety of functional groups within an allylic phosphate precursor. This method uses readily accessible N,N-dimethylglycine aryl esters and functionalized allylic phosphates, forming quaternary ammonium salts in situ in the presence of a palladium catalyst. Subsequent enantioselective [2,3]-sigmatropic rearrangement, promoted by the chiral isothiourea tetramisole, generates α-amino acid derivatives with two contiguous stereocenters. The incorporation of electron-withdrawing ester and amide groups gave the best results, furnishing the desired products in moderate to good yields (29–70%), with low diastereocontrol (typically 60:40 dr) but high enantioselectivity (up to 90:10 er). These results indicate that substrate–catalyst interactions in the proposed transition state are sensitive to the substitution pattern of the substrates.
机译:通过在烯丙基磷酸酯前体中引入多种官能团,研究了串联N-烯丙基化/ [2,3]-重排方案的范围和局限性。该方法使用易于获得的N,N-二甲基甘氨酸芳基酯和官能化的烯丙基磷酸酯,在钯催化剂的存在下原位形成季铵盐。手性异硫脲四咪唑促进了随后的对映选择性[2,3]-σ重排,产生具有两个连续立体中心的α-氨基酸衍生物。吸电子的酯和酰胺基团的结合提供了最佳的结果,以中等至良好的收率(29-70%)提供了所需的产物,非对映异构控制较低(通常为60:40 dr),但对映选择性很高(高达90:10) er)。这些结果表明,在拟议的过渡态下,底物与催化剂的相互作用对底物的取代模式敏感。

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