Department of Chemistry, Ångström Laboratory, Uppsala University , Box 523, 75120 Uppsala, Sweden.
J Am Chem Soc. 2017 Mar 1;139(8):2940-2943. doi: 10.1021/jacs.7b00428. Epub 2017 Feb 13.
The unprecedented formation of unsymmetrical alkenes from the intermolecular reductive coupling of two different aldehydes is described. In contrast to the McMurry reaction which affords statistical product mixtures, selectivity in the reported procedure is achieved by a sequential ionic mechanism in which a first aldehyde is reacted with a phosphanylphosphonate to afford a phosphaalkene intermediate which, upon activation by hydroxide, reacts with a second aldehyde to the unsymmetrical E-alkenes. The described reaction is free of transition metals and proceeds under ambient temperature within minutes in good to excellent overall yields. It is a new methodology to use feedstock aldehydes for the direct production of C═C double bond-containing products and may impact how chemists think of multistep synthetic sequences in the future.
描述了一种前所未有的从两种不同醛的分子间还原偶联形成不对称烯烃的方法。与形成统计产品混合物的麦克默里反应不同,所报道的方法中的选择性是通过顺序离子机理实现的,其中第一个醛与膦酸酯反应生成磷杂烯中间体,然后该中间体在氢氧化物的激活下与第二个醛反应生成不对称 E-烯烃。该反应不使用过渡金属,在环境温度下几分钟内即可完成,总收率良好到优秀。这是一种使用原料醛直接生产含有 C═C 双键的产品的新方法,可能会影响化学家对未来多步合成序列的看法。