Liu Shun, Zhang Qidong, Ma Ji, Huo Xiankuan, Ji Lingbo, He Baojiang, Chai Guobi, Shi Qingzhao, Mao Jian, Xi Hui, Fan Wu, Li Suhua
School of Chemistry, IGCME, Sun Yat-Sen University, Guangzhou, Guangdong 510006, People's Republic of China.
Key Laboratory of Tobacco Flavor Basic Research, Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, Henan 450001, People's Republic of China.
Org Lett. 2024 Jun 28;26(25):5306-5311. doi: 10.1021/acs.orglett.4c01589. Epub 2024 Jun 13.
Dehydration of alcohols is one of the most fundamental transformations in the organic chemistry class and one of the most widely used methods for producing alkenes in synthetic research. Numerous methods and reagents have been developed to control the regio- and stereoselectivity as well as the dehydration efficiency of normal alcohols. Despite these achievements, regio- and stereoselective and predictable dehydration of allylic alcohol has seldom been reported, except for limited substrates with a native preferred elimination position, as a result of the challenges that many potential dienes could be formed via 1,2- or 1,4-- or -elimination. Here, we report a BuOK/potassium 2,2-difluoroacetate-mediated 1,4--dehydration of allylic alcohol for the synthesis of regio- and stereodefined conjugated dienes via an generated directing group strategy. This reaction exhibits a broad substrate scope and good functional group compatibility for primary-tertiary alcohols. The simple and scalable (up to 0.6 mol) procedure with readily available and inexpensive reagents makes it a practical method for conjugated diene synthesis. Mechanistic studies reveal that an acetate with -butoxide and allyloxide acetal moiety is formed as an intermediate, in which the acetate and the acetal act as the directing group for the base-promoted elimination. An unusual H evolution is also involved in the reaction.
醇的脱水反应是有机化学课程中最基本的转化反应之一,也是合成研究中制备烯烃最广泛使用的方法之一。人们已经开发了许多方法和试剂来控制普通醇的区域选择性、立体选择性以及脱水效率。尽管取得了这些成果,但除了少数具有天然优先消除位置的有限底物外,烯丙醇的区域和立体选择性以及可预测的脱水反应鲜有报道,这是因为通过1,2-或1,4-消除反应可能会形成许多潜在的二烯。在此,我们报道了一种由叔丁醇钾/2,2-二氟乙酸钾介导的烯丙醇1,4-脱水反应,通过生成导向基团策略合成区域和立体明确的共轭二烯。该反应对伯醇至叔醇具有广泛的底物范围和良好的官能团兼容性。该方法简单且可扩展(高达0.6摩尔),使用的试剂容易获得且价格低廉,使其成为一种实用的共轭二烯合成方法。机理研究表明,形成了一种带有叔丁氧基和烯丙氧基缩醛部分的乙酸酯作为中间体,其中乙酸酯和缩醛作为碱促进消除反应的导向基团。该反应还涉及一种不寻常的氢释放过程。