Dipartimento di Scienze degli Alimenti e del Farmaco, Università di Parma, Parco Area delle Scienze 27A, 43124 Parma, Italy.
Chem Rev. 2020 Mar 11;120(5):2448-2612. doi: 10.1021/acs.chemrev.9b00481. Epub 2020 Feb 10.
The principle of vinylogy states that the electronic effects of a functional group in a molecule are possibly transmitted to a distal position through interposed conjugated multiple bonds. As an emblematic case, the nucleophilic character of a π-extended enolate-type chain system may be relayed from the legitimate α-site to the vinylogous γ, ε, ..., ω remote carbon sites along the chain, provided that suitable HOMO-raising strategies are adopted to transform the unsaturated pronucleophilic precursors into the reactive polyenolate species. On the other hand, when "unnatural" carbonyl -sites are activated as nucleophiles (umpolung), vinylogation extends the nucleophilic character to "unnatural" β, δ, ... remote sites. Merging the principle of vinylogy with activation modalities and concepts such as iminium ion/enamine organocatalysis, NHC-organocatalysis, cooperative organo/metal catalysis, bifunctional organocatalysis, dicyanoalkylidene activation, and organocascade reactions represents an impressive step forward for all vinylogous transformations. This review article celebrates this evolutionary progress, by collecting, comparing, and critically describing the achievements made over the nine year period 2010-2018, in the generation of vinylogous enolate-type donor substrates and their use in chemical synthesis.
烯醇缩合反应的原理表明,分子中一个官能团的电子效应可能通过插入的共轭多重键传递到远端位置。作为一个典型的例子,π-扩展烯醇型链系统的亲核性可以从合法的α位沿着链传递到乙烯基γ、ε、...、ω远程碳位,只要采用合适的 HOMO 提升策略将不饱和亲核前体转化为反应性聚烯醇物种。另一方面,当“非自然”羰基位点被激活为亲核试剂(反转)时,烯醇缩合将亲核性扩展到“非自然”的β、δ、...远程位点。将烯醇缩合原理与活化方式和概念(如亚胺离子/烯胺有机催化、NHC-有机催化、协同有机/金属催化、双功能有机催化、二氰基亚烷基活化和有机级联反应)融合,代表了所有烯醇缩合转化的一个令人印象深刻的进步。本文通过收集、比较和批判性描述 2010-2018 年九年来在烯醇型给电子底物的生成及其在化学合成中的应用方面取得的成就,来庆祝这一发展进步。