Key Laboratory of Chemical Genomics, School of Chemical Biology and Biotechnology, Peking University, Shenzhen Graduate School, Shenzhen, 518055 (China) http://web.pkusz.edu.cn/huang.
Angew Chem Int Ed Engl. 2013 Dec 23;52(52):14219-23. doi: 10.1002/anie.201308835. Epub 2013 Nov 28.
Carbonyl-substituted allenes are highly important synthetic intermediates for a number of heterocycles and strained-ring systems. However, chemistry of allenyl aldehydes has not been explored as extensively as their ketone, ester, or amide analogues because of a lack of general synthetic methods. Described herein is the first direct α-vinylidenation of aldehydes and an α-vinylidenation/γ-functionalization cascade to access tri- and tetrasubstituted allenyl aldehydes using a combination of a gold catalyst and an secondary amine. The reactive enamine intermediate of an aldehyde reacts with the gold-activated hypervalent silylethynyl benziodoxolone to selectively generate the corresponding trisubstituted allenyl aldehyde. The allenyl aldehyde can further react with another equivalent of the alkynylation reagent or other electrophiles to afford tetrasubstituted allenes bearing an aldehyde group, an acetylene, and a halogen functionality. This method enables rapid access to polysubstituted furans from aldehydes.
羰基取代的烯丙基化合物是许多杂环和应变环体系的重要合成中间体。然而,由于缺乏通用的合成方法,烯丙基醛的化学性质尚未得到广泛探索,其酮、酯或酰胺类似物的研究也不如它们深入。本文首次使用金催化剂和仲胺组合,实现了醛的直接α-亚乙烯基化和α-亚乙烯基化/γ-官能团化级联反应,从而获得三取代和四取代的烯丙基醛。醛的反应烯胺中间体与金活化的高价硅基乙炔基苯并碘恶唑酮反应,选择性地生成相应的三取代烯丙基醛。烯丙基醛可以进一步与另一个当量的炔基化试剂或其他亲电试剂反应,得到带有醛基、乙炔基和卤素官能团的四取代烯丙基化合物。该方法可从醛类化合物快速合成多取代呋喃。