Padwa A, Zhang ZJ, Zhi L
Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.
J Org Chem. 2000 Aug 25;65(17):5223-32. doi: 10.1021/jo000378f.
A series of 3-diazoalkanediones, when treated with a catalytic quantity of a rhodium(II) carboxylate, were found to afford oxabicyclic dipolar cycloadducts derived by the trapping of a carbonyl ylide intermediate. The reaction involves generation of the 1,3-dipole by intramolecular cyclization of the keto carbenoid onto the oxygen atom of the neighboring keto group. Both five- and six-ring carbonyl ylides are formed with the same efficiency. A study of the tandem cyclization-cycloaddition cascade of several alpha-diazo ketoesters was also carried out, and the cascade sequence proceeded in high yield. When the interacting keto carbonyl group was replaced by an imido group, the rhodium(II)-catalyzed reaction proceeded uneventfully. In contrast, alpha-diazo amidoesters do not undergo nitrogen extrusion on treatment with a Rh(II) catalyst. Instead, the diazo portion of the molecule undergoes 1,3-dipolar cycloaddition with various dipolarophiles to give substituted pyrazoles as the final products.
一系列3-重氮链烷二酮在与催化量的羧酸铑(II)反应时,被发现能生成通过捕获羰基叶立德中间体而得到的氧杂双环偶极环加成产物。该反应涉及通过酮类卡宾中间体分子内环化到相邻酮基的氧原子上生成1,3-偶极子。五元环和六元环羰基叶立德的生成效率相同。还对几种α-重氮酮酯的串联环化-环加成级联反应进行了研究,该级联反应以高产率进行。当相互作用的酮羰基被亚胺基取代时,铑(II)催化的反应顺利进行。相反,α-重氮酰胺酯在用Rh(II)催化剂处理时不会发生氮的消除。取而代之的是,分子中的重氮部分与各种亲偶极体发生1,3-偶极环加成反应,最终生成取代吡唑。