Zeng Mingshuo, Herzon Seth B
Department of Chemistry, Yale University , New Haven, Connecticut 06520, United States.
J Org Chem. 2015 Sep 4;80(17):8604-18. doi: 10.1021/acs.joc.5b01220. Epub 2015 Aug 18.
The half-sandwich ruthenium complexes 1-3 activate terminal alkynes toward anti-Markovnikov hydration and reductive hydration under mild conditions. These reactions are believed to proceed via addition of water to metal vinylidene intermediates (4). The functionalization of propargylic alcohols by metal vinylidene pathways is challenging owing to decomposition of the starting material and catalytic intermediates. Here we show that catalyst 2 can be employed to convert propargylic alcohols to 1,3-diols in high yield and with retention of stereochemistry at the propargylic position. The method is also amenable to propargylic amine derivatives, thereby establishing a route to enantioenriched 1,3-amino alcohol products. We also report the development of formal anti-Markovnikov reductive amination and oxidative hydration reactions to access linear amines and carboxylic acids, respectively, from terminal alkynes. This chemistry expands the scope of products that can be prepared from terminal alkynes by practical and high-yielding metal-catalyzed methods.
半三明治型钌配合物1 - 3能在温和条件下使末端炔烃发生反马氏水合反应和还原水合反应。据信这些反应是通过水加成到金属亚乙烯基中间体(4)上进行的。由于起始原料和催化中间体的分解,通过金属亚乙烯基途径对炔丙醇进行官能团化具有挑战性。在此我们表明,催化剂2可用于将炔丙醇高产率地转化为1,3 - 二醇,并且在炔丙基位置保持立体化学构型。该方法也适用于炔丙胺衍生物,从而建立了一条通往对映体富集的1,3 - 氨基醇产物的路线。我们还报告了形式上的反马氏还原胺化反应和氧化水合反应的开发,分别从末端炔烃制备直链胺和羧酸。这种化学方法扩展了通过实用且高产的金属催化方法由末端炔烃制备的产物范围。