Brinker Udo H, Lin Guoying, Xu Linxiao, Smith William B, Mieusset Jean-Luc
Institut für Organische Chemie, Universität Wien, Währinger Str. 38, 1090 Wien, Austria.
J Org Chem. 2007 Oct 26;72(22):8434-51. doi: 10.1021/jo7013356. Epub 2007 Oct 6.
Novel insertion reactions of dichloro- and dibromocarbene into carbon-hydrogen bonds adjacent to cyclopropane rings are reported. It is found that the predominant isomers formed in the reactions with bicyclo[4.1.0]heptane result from insertion into the endo carbon-hydrogen bonds alpha to the three-membered ring. In the reactions of bicyclo[3.1.0]hexane, however, the exo dihalocarbene insertion products are formed as the major isomers. In some compounds cyclopropane rings "activate" adjacent carbon-hydrogen bonds, whereas other systems containing three-membered rings do not. Moreover, the influence of various substituents (methyl, geminal dimethyl, phenyl, methoxy, and ethoxy) attached to bicyclo[3.1.0]hexane and bicyclo[4.1.0]heptane in dihalocarbene reactions has been studied. The findings can be explained by the concept of maximum orbital overlaps of Walsh orbitals of the cyclopropane rings and the alpha carbon-hydrogen bonds. In stark contrast, selective insertion into the tertiary carbon-hydrogen bonds of the cyclobutane ring in bicyclo[4.2.0]octane is observed.
报道了二氯卡宾和二溴卡宾与环丙烷环相邻的碳氢键的新型插入反应。研究发现,与双环[4.1.0]庚烷反应生成的主要异构体是由卡宾插入三元环α位的内型碳氢键所致。然而,在双环[3.1.0]己烷的反应中,外型二卤卡宾插入产物是主要异构体。在某些化合物中,环丙烷环会“活化”相邻的碳氢键,而其他含三元环的体系则不会。此外,还研究了双环[3.1.0]己烷和双环[4.1.0]庚烷上连接的各种取代基(甲基、偕二甲基、苯基、甲氧基和乙氧基)在二卤卡宾反应中的影响。这些发现可以用环丙烷环的沃尔什轨道与α碳氢键的最大轨道重叠概念来解释。与之形成鲜明对比的是,观察到双环[4.2.0]辛烷中卡宾选择性插入环丁烷环的叔碳氢键。