Kudoh Takayuki, Mori Tomoko, Shirahama Mitsuhito, Yamada Masashi, Ishikawa Teruhiko, Saito Seiki, Kobayashi Hisayoshi
Department of Medical and Bioengineering Science, Graduate School of Natural Science and Technology, Okayama University, Tsushima, Okayama, Japan.
J Am Chem Soc. 2007 Apr 25;129(16):4939-47. doi: 10.1021/ja066485u. Epub 2007 Mar 29.
Base-promoted cycloaddition reactions of 1-aryl- or 1-aryl-7-substituted-4-oxahepta-1,6-diyne systems in DMSO have proven to involve an anionic intramolecular Diels-Alder process taking place even at room temperature in spite of the reaction suffering from temporary disruption of aromaticity. Although initially formed alpha-arylallenide anion can be protonated by DMSO, it can be back to the allenide anion probably because of a small acidity difference between alpha-arylallene and DMSO. The alpha-arylallenide anion in combination with the alpha-aryl substituent can constitute an anionic diene structure that undergoes the intramolecular Diels-Alder reaction involving the C(6)-yne part, a very fast process probably because of the increased HOMO-1 level of the anionic diene, as shown by DFT calculations. Diversified substituted naphthalenes, benzofurans, phenanthrenes, and quinolines, including biaryl architectures, are available from 4-oxahepta-1,6-diynes in a highly expeditious way.
已证明,在二甲基亚砜(DMSO)中,1-芳基或1-芳基-7-取代-4-氧杂庚-1,6-二炔体系的碱促进环加成反应涉及阴离子分子内狄尔斯-阿尔德反应,即使在室温下该反应也会发生,尽管反应会遭受芳香性的暂时破坏。尽管最初形成的α-芳基丙二烯阴离子可以被DMSO质子化,但由于α-芳基丙二烯和DMSO之间的酸度差异较小,它可能会变回丙二烯阴离子。α-芳基丙二烯阴离子与α-芳基取代基结合可以构成一种阴离子二烯结构,该结构会发生涉及C(6)-炔部分的分子内狄尔斯-阿尔德反应,这可能是一个非常快速的过程,因为阴离子二烯的HOMO-1水平增加,如密度泛函理论(DFT)计算所示。通过4-氧杂庚-1,6-二炔可以以非常快速的方式获得多种取代的萘、苯并呋喃、菲和喹啉,包括联芳基结构。