Hernandez Jackson J, Frontier Alison J
Department of Chemistry, University of Rochester 120 Trustee Road Rochester New York 14611 USA
Chem Sci. 2022 Nov 10;13(46):13836-13842. doi: 10.1039/d2sc04750k. eCollection 2022 Nov 30.
We report a Brønsted acid-catalyzed carbocyclization cascade, featuring condensation of an alcohol/sulfonamide with an aldehyde followed by an intramolecular three-component coupling involving an alkyne, an oxocarbenium/iminium ion, and an arene. A formal cycloaddition is embedded in the cationic cascade, which enables the synthesis of a wide range of fused heterotricycles. The diastereoselectivity of the cascade is studied using secondary alcohols/sulfonamides with different carbonyl partners. The described method results in the preparation of synthetically versatile scaffolds with ample opportunity for further derivatization at the resulting tetrasubstituted olefin, or by inclusion of other functionalizable motifs from the starting materials. It is worth noting that this chemistry also facilitates the synthesis of piperidines and 1,4-oxazepanes, as well as the inclusion of indoles and benzofurans, which are privileged motifs for medicinal chemistry. Herein we present the generality of this approach and some chemical transformations that can be achieved with our substrates.
我们报道了一种布朗斯特酸催化的碳环化串联反应,其特征在于醇/磺酰胺与醛缩合,随后是涉及炔烃、氧鎓/亚胺离子和芳烃的分子内三组分偶联。阳离子串联反应中嵌入了一个形式上的环加成反应,这使得能够合成多种稠合杂三环。使用具有不同羰基伙伴的仲醇/磺酰胺研究了该串联反应的非对映选择性。所描述的方法可制备具有多种合成用途的支架,在所得的四取代烯烃处有充足的进一步衍生化机会,或者通过引入起始材料中的其他可官能化基团。值得注意的是,这种化学方法还促进了哌啶和1,4-恶唑烷的合成,以及吲哚和苯并呋喃的引入,这些都是药物化学中的优势基团。在此,我们展示了这种方法的通用性以及使用我们的底物可以实现的一些化学转化。