Derasp Joshua S, Vincent-Rocan Jean-François, Beauchemin André M
Centre for Catalysis Research and Innovation, Department of Chemistry and Biomolecular Sciences, University of Ottawa , 10 Marie Curie, Ottawa, Ontario K1N 6N5, Canada.
Org Lett. 2016 Feb 19;18(4):658-61. doi: 10.1021/acs.orglett.5b03590. Epub 2016 Feb 8.
Cascade reactions for the synthesis of 1,2,4-triazinones and 5-aminopyridazinones are reported using α-ketocarbazones as N-isocyanate precursors and exploiting the divergent reactivity observed with primary and secondary amines. Triazinones were formed with primary amines, likely through addition of the amine on the N-isocyanate, followed by cyclization (condensation) on the ketone. In contrast, such cyclization is impossible for secondary amines; this allows in situ formation of enamines, which, upon cyclization, generate 5-amino pyridazinones. This sequence further illustrates the versatility of N-isocyanates in heterocyclic synthesis and provides a rare example of carbon nucleophiles reacting with N-isocyanates.
报道了以α-酮腙作为N-异氰酸酯前体,并利用伯胺和仲胺所表现出的不同反应性来合成1,2,4-三嗪酮和5-氨基哒嗪酮的级联反应。三嗪酮是由伯胺形成的,可能是通过胺加成到N-异氰酸酯上,然后在酮上进行环化(缩合)。相比之下,仲胺无法进行这种环化;这使得烯胺能够原位形成,烯胺环化后生成5-氨基哒嗪酮。该序列进一步说明了N-异氰酸酯在杂环合成中的多功能性,并提供了一个碳亲核试剂与N-异氰酸酯反应的罕见例子。