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Phenolic Activation in Chiral Brønsted Acid-CatalyzedIntramolecular α-Amidoalkylation Reactions for the Synthesisof Fused Isoquinolines

机译:手性布朗斯台德酸催化的酚类活化分子内α-酰胺基烷基化反应的合成融合异喹啉

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摘要

An organolithium addition–intramolecular α-amidoalkylation sequence on N-phenethylimides has been developed for the synthesis of fused tetrahydroisoquinoline systems using 1,1′-bi-2-naphthol (binol)-derived Brønsted acids. This transformation is the first in which activated benzene derivatives are used as internal nucleophiles, instead of electron-rich heteroaromatics, generating a quaternary stereocenter. Phenolic substitution on the aromatic ring of the phenethylamino moiety and the use of binol-derived N-triflylphosphoramides as catalysts are determinants to achieve reasonable levels of enantioselection, that is, up to 75% enantiomeric excess, in the α-amidoalkylation step. The procedure is complementary to the intermolecular α-amidoalkylation process, as opposite enantiomers are formed, and to the Pictet–Spengler cyclization, which allows the formation of tertiary stereocenters.
机译:已开发出一种在N-苯乙基酰亚胺上的有机锂加成-分子内α-酰胺基烷基化序列,用于合成衍生自1,1'-联-2-萘酚(二元醇)的布朗斯台德酸的稠合四氢异喹啉体系。这种转化是首次将活化的苯衍生物用作内部亲核试剂,而不是富含电子的杂芳族化合物,从而生成季立体中心。苯乙氨基部分芳香环上的苯酚取代以及使用二酚衍生的N-三氟磷酰胺作为催化剂是在α-酰胺基烷基化步骤中实现合理水平对映异构的决定因素,即高达75%的对映异构体过量。该过程是分子间α-酰胺基烷基化过程(形成相反的对映异构体)的补充,是Pictet-Spengler环化的补充,后者可以形成叔立体中心。

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