Aalto University, School of Chemical Technology, Laboratory of Organic Chemistry, PO Box 16100, 00076, Aalto, Finland.
Chem Rec. 2014 Feb;14(1):52-61. doi: 10.1002/tcr.201300033.
In 1976 Mukaiyama published a paper that was to make a major impact on the development of the aldol reaction in the future. Mild enolate formation by treatment of a ketone with dibutylboron triflate in the presence of a tertiary amine generates a relatively stable boron enolate, which can subsequently react with an aldehyde to give the cross-aldol product in good yields. This reaction has become a reliable tool for the practicing synthetic chemist. Nearly 10000 polyketides are known, and of these about 600 contain the tripropionate unit with a stereotetrad, four contiguous stereocenters with alternating methyl and hydroxyl substituents in the main chain. The versatility of the boron enolate aldol reaction is showcased with selected applications in the synthesis of these structural motifs.
1976 年,Mukaiyama 发表了一篇论文,这篇论文对未来的 aldol 反应发展产生了重大影响。在叔胺存在下,用二丁基硼酸三氟甲磺酸酯处理酮可温和地形成烯醇盐,生成相对稳定的硼烯醇盐,随后可与醛反应以高产率得到交叉 aldol 产物。该反应已成为实际合成化学家的可靠工具。已知有近 10000 种聚酮,其中约 600 种含有三丙酸酯单元,具有立体四环,主链中四个连续的立体中心,交替具有甲基和羟基取代基。硼烯醇盐 aldol 反应的多功能性在这些结构基序的合成中的一些应用中得到了展示。