Gardner Kristen E, de Lescure Louis, Hardy Melissa A, Tan Jin, Sigman Matthew S, Paton Robert S, Sarpong Richmond
Department of Chemistry, University of California Berkeley CA USA 94708
Department of Chemistry, Colorado State University Fort Collins CO 80523 USA
Chem Sci. 2024 Aug 30;15(38):15632-8. doi: 10.1039/d4sc04885g.
The synthesis of aryl amines from 3-alkynyl-2-pyrones and various amines is described. Mechanistically, the aryl amines are proposed to arise from the 3-alkynyl-2-pyrone substrates through their selective opening in a 1,6-fashion by secondary amines followed by decarboxylation and an unexpected rearrangement. The proposed mechanism is supported by quantum chemical transition-state calculations, which are consistent with the regiochemical outcome. The scope of this transformation spans a variety of 3-alkynyl-2-pyrones and a range of secondary amines. The influence of the secondary amine coupling partners on reaction efficiency was elucidated through data-driven modeling as well as scope exploration. These latter studies revealed that the steric bulk of the secondary amine coupling partner under the reaction conditions serves as a strong indicator of overall reaction efficiency.
本文描述了由3-炔基-2-吡喃酮与各种胺合成芳基胺的方法。从机理上讲,芳基胺被认为是由3-炔基-2-吡喃酮底物通过仲胺以1,6-方式选择性开环,随后脱羧和发生意外重排而产生的。所提出的机理得到了量子化学过渡态计算的支持,这与区域化学结果一致。这种转化的范围涵盖了多种3-炔基-2-吡喃酮和一系列仲胺。通过数据驱动建模和范围探索阐明了仲胺偶联伙伴对反应效率的影响。后一项研究表明,反应条件下仲胺偶联伙伴的空间位阻是整体反应效率的有力指标。