Department of Chemistry and Biochemistry, The Ohio State University , 100 West 18th Avenue, Columbus, Ohio 43210, United States.
J Am Chem Soc. 2017 Dec 13;139(49):18034-18043. doi: 10.1021/jacs.7b10055. Epub 2017 Nov 22.
1,3-Dienes are ubiquitous and easily synthesized starting materials for organic synthesis, and alkyl acrylates are among the most abundant and cheapest feedstock carbon sources. A practical, highly enantioselective union of these two readily available precursors giving valuable, enantio-pure skipped 1,4-diene esters (with two configurationally defined double bonds) is reported. The process uses commercially available cobalt salts and chiral ligands. As illustrated by the use of 20 different substrates, including 17 prochiral 1,3-dienes and 3 acrylates, this hetero-dimerization reaction is tolerant of a number of common organic functional groups (e.g., aromatic substituents, halides, isolated mono- and di-substituted double bonds, esters, silyl ethers, and silyl enol ethers). The novel results including ligand, counterion, and solvent effects uncovered during the course of these investigations show a unique role of a possible cationic Co(I) intermediate in these reactions. The rational evolution of a mechanism-based strategy that led to the eventual successful outcome and the attendant support studies may have further implications for the expanding use of low-valent group 9 metal complexes in organic synthesis.
1,3-二烯是有机合成中无处不在且易于合成的起始原料,而烷基丙烯酸盐是最丰富和最便宜的原料碳源之一。本文报道了一种实用且高度对映选择性的方法,可将这两种易得的前体结合在一起,生成有价值的对映纯的缺电子 1,4-二烯酯(具有两个构型定义的双键)。该过程使用商业上可获得的钴盐和手性配体。如通过使用 20 种不同的底物(包括 17 种潜手性 1,3-二烯和 3 种丙烯酸盐)所示,该杂二聚反应可以容忍许多常见的有机官能团(例如,芳基取代基,卤化物,孤立的单取代和二取代双键,酯,硅醚和硅烯醚)。在这些研究过程中发现的新型结果,包括配体,抗衡离子和溶剂效应,显示了可能的阳离子 Co(I)中间体在这些反应中的独特作用。基于机制的策略的合理发展导致了最终成功的结果以及伴随的支持研究,这可能对在有机合成中扩大使用低价第 9 族金属配合物具有进一步的意义。