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通过改变环氧化合物的取代基和结构骨架,钌催化炔基环氧化合物的环化反应。

Ruthenium-catalyzed cyclization of alkyne-epoxide functionalities through alternation of the substituent and structural skeleton of epoxides.

作者信息

Ming-Yuan Lin, Madhushaw Reniguntala J, Liu Rai-Shung

机构信息

Department of Chemistry, National Tsing-Hua University, Hsinchu, Taiwan, ROC.

出版信息

J Org Chem. 2004 Oct 29;69(22):7700-4. doi: 10.1021/jo048983w.

Abstract

Treatment of 1-(o-ethynylphenyl)-2-alkyl-2-aryl epoxides with TpRuPPh(3)(CH(3)CN)(2)PF(6) catalyst (10 mol %) in hot toluene (100 degrees C, 12 h) led to an atypical cyclization and gave 1-aryl-2-alkyl-1H-indene derivatives and carbon monoxide efficiently. The cyclization of 1-cis-enynyl-2-alkyl epoxides with this catalyst in hot toluene (10 mol %, 100 degrees C, 12 h) gave 2,5-disubstituted phenols in 45-72% yields. Under the same conditions, 1-cis-enynyl- 2,2-dialkyl epoxides and 1-cis-enynyl- 2-alkyl-2-aryl epoxides gave the corresponding 6,6-disubstituted cyclohexa-2,4-dien-1-ones in good yields (85-91%). Mechanisms for these new cyclization reactions are proposed on the basis of trapping experiments and isotope labeling experiments. The formation of 1H-indene products likely involves ruthenium-acyl intermediates whereas cyclohexa-2,4-dien-1-ones are thought to derive from ruthenium-ketene intermediates.

摘要

在热甲苯(100℃,12小时)中,用TpRuPPh(3)(CH(3)CN)(2)PF(6)催化剂(10摩尔%)处理1-(邻乙炔基苯基)-2-烷基-2-芳基环氧化物,导致非典型环化反应,并高效生成1-芳基-2-烷基-1H-茚衍生物和一氧化碳。在热甲苯中用该催化剂(10摩尔%,100℃,12小时)处理1-顺式烯炔基-2-烷基环氧化物,以45 - 72%的产率得到2,5-二取代苯酚。在相同条件下,1-顺式烯炔基-2,2-二烷基环氧化物和1-顺式烯炔基-2-烷基-2-芳基环氧化物以良好的产率(85 - 91%)得到相应的6,6-二取代环己-2,4-二烯-1-酮。基于捕获实验和同位素标记实验,提出了这些新环化反应的机理。1H-茚产物的形成可能涉及钌-酰基中间体,而环己-2,4-二烯-1-酮被认为源自钌-乙烯酮中间体。

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