Multicomponent Synthesis of α-Branched Amines via a Zinc-Mediated Carbonyl Alkylative Amination Reaction

被引:18
|
作者
Phelps, Joseph M. [1 ]
Kumar, Roopender [1 ]
Robinson, James D. [1 ]
Chu, John C. K. [1 ]
Floden, Nils J.
Beaton, Sarah [1 ]
Gaunt, Matthew J. [1 ]
机构
[1] Univ Cambridge, Yusuf Hamied Dept Chem, Cambridge CB2 1EW, England
基金
英国工程与自然科学研究理事会;
关键词
HIGH-THROUGHPUT EXPERIMENTATION; N-HYDROXYPHTHALIMIDE ESTERS; ASYMMETRIC-SYNTHESIS; CATALYZED SYNTHESIS; ORGANIC-SYNTHESIS; STRECKER REACTION; TERTIARY-AMINES; ACID-CHLORIDES; IMINES; RADICALS;
D O I
10.1021/jacs.3c14037
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Methods for the synthesis of alpha-branched alkylamines are important due to their ubiquity in biologically active molecules. Despite the development of many methods for amine preparation, C(sp3)-rich nitrogen-containing compounds continue to pose challenges for synthesis. While carbonyl reductive amination (CRA) between ketones and alkylamines is the cornerstone method for alpha-branched alkylamine synthesis, it is sometimes limited by the sterically demanding condensation step between dialkyl ketones and amines and the more restricted availability of ketones compared to aldehydes. We recently reported a "higher-order" variant of this transformation, carbonyl alkylative amination (CAA), which utilized a halogen atom transfer (XAT)-mediated radical mechanism, enabling the streamlined synthesis of complex alpha-branched alkylamines. Despite the efficacy of this visible-light-driven approach, it displayed scalability issues, and competitive reductive amination was a problem for certain substrate classes, limiting applicability. Here, we report a change in the reaction regime that expands the CAA platform through the realization of an extremely broad zinc-mediated CAA reaction. This new strategy enabled elimination of competitive CRA, simplified purification, and improved reaction scope. Furthermore, this new reaction harnessed carboxylic acid derivatives as alkyl donors and facilitated the synthesis of alpha-trialkyl tertiary amines, which cannot be accessed via CRA. This Zn-mediated CAA reaction can be carried out at a variety of scales, from a 10 mu mol setup in microtiter plates enabling high-throughput experimentation, to the gram-scale synthesis of medicinally-relevant compounds. We believe that this transformation enables robust, efficient, and economical access to alpha-branched alkylamines and provides a viable alternative to the current benchmark methods.
引用
收藏
页码:9045 / 9062
页数:18
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