Department of Chemistry, University of Rochester, 414 Hutchison Hall, 100 Trustee Road, Rochester, New York 14627, United States.
Org Lett. 2020 Jun 5;22(11):4350-4354. doi: 10.1021/acs.orglett.0c01351. Epub 2020 May 15.
A novel metal-free double-annulation cascade for the construction of unusual fused heterocyclic systems is described. This simple protocol enables the sequential assembly of two rings in one pot from two simple precursors. Acidic conditions promote the condensation and the intramolecular alkynyl Prins reaction of an enyne or arenyne alcohol with a cyclic hemiaminal to form a five-, six-, or seven-membered oxacycle followed by a seven- or eight-membered azacycle. In this transformation, chemical complexity is rapidly generated with the formation of three new bonds (one C-O, one C-C, and one C-N) in one synthetic operation. The strategy is modular and relatively general, providing access to a series of unique fused bicyclic scaffolds.
描述了一种新颖的无金属双环化级联反应,用于构建不寻常的稠合杂环体系。该简单方案能够从两个简单的前体一锅法中顺序地构建两个环。酸性条件促进了烯炔或芳炔醇与环状半亚胺的缩合以及分子内炔基 Prins 反应,形成五、六或七元氧杂环,随后形成七或八元氮杂环。在这种转化中,通过一步合成反应形成三个新键(一个 C-O、一个 C-C 和一个 C-N),快速生成了化学复杂性。该策略具有模块性和相对通用性,可获得一系列独特的稠合双环支架。