Obydennov Dmitrii L, Simbirtseva Alena E, Piksin Sergey E, Sosnovskikh Vyacheslav Y
Institute of Natural Sciences and Mathematics, Ural Federal University, 51 Lenina Ave., Ekaterinburg 620000, Russian Federation.
ACS Omega. 2020 Dec 15;5(51):33406-33420. doi: 10.1021/acsomega.0c05357. eCollection 2020 Dec 29.
In this work, a three-stage and easily scalable synthesis of 2,6-dicyano-4-pyrone (overall yield of 45%) as a new convenient building block has been developed from diethyl acetonedioxalate. It was shown that the transformation with hydroxylamine and [3 + 2]-cycloaddition, in contrast to the reactions with hydrazines, selectively proceed through the attack at the cyano groups without the pyrone ring-opening to give symmetrical and unsymmetrical pyrone-bearing heterocyclic triads containing 1,2,4- and 1,3,4-oxadiazoles as well as tetrazole moieties. The reaction of 2,6-bis(hetaryl)-4-pyrones with ammonia afforded 2,6-bis(hetaryl)pyridines in 63-87% yields. The 4-pyridone/4-pyridinol tautomerism of 2,6-bis(hetaryl)pyridinols and the influence of the nature of adjacent azolyl moieties on this equilibrium have been discussed.
在这项工作中,已开发出一种以丙酮二草酸二乙酯为原料,分三步且易于扩大规模合成2,6 - 二氰基 - 4 - 吡喃酮(总产率为45%)的方法,该物质是一种新型便捷的结构单元。结果表明,与肼类反应不同,用羟胺进行的转化和[3 + 2]环加成反应选择性地通过对氰基的进攻进行,不会使吡喃酮环开环,从而得到含有1,2,4 - 和1,3,4 - 恶二唑以及四唑部分的对称和不对称含吡喃酮杂环三联体。2,6 - 双(杂芳基) - 4 - 吡喃酮与氨反应,以63 - 87%的产率得到2,6 - 双(杂芳基)吡啶。讨论了2,6 - 双(杂芳基)吡啶醇的4 - 吡啶酮/4 - 吡啶醇互变异构现象以及相邻唑基部分的性质对该平衡的影响。