Kim Hahn, Lee Chulbom
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
J Am Chem Soc. 2006 May 17;128(19):6336-7. doi: 10.1021/ja0619758.
A novel rhodium-catalyzed cycloisomerization has been developed which converts N-propargyl enamine derivatives to their isomeric six-membered azacycles in good yields under mild reaction conditions. The [Rh(C2H2)2Cl]2/P(4-F-C6H4)3 catalyst, in combination with DABCO as a base and DMF as a solvent, was found to be effective in promoting the cyclization process. The reaction is proposed to proceed through an intramolecular nucleophilic attack of the enamine to the rhodium vinylidene followed by a base-mediated proton-shunting process. The base was found to play a crucial role in the transformation, indicating the proton migration to be an integral component of the catalytic cycle. An aprotic polar solvent was required for high conversion, which points to the intermediacy of a zwitterionic intermediate. The present reaction should prove useful for the efficient synthesis of various six-membered azacycles that are important structural motifs of many natural isolates and medicinal agents.
已开发出一种新型铑催化的环异构化反应,该反应能在温和的反应条件下将N-炔丙基烯胺衍生物高产率地转化为其异构的六元氮杂环。发现[Rh(C₂H₂)₂Cl]₂/P(4-F-C₆H₄)₃催化剂与作为碱的DABCO和作为溶剂的DMF相结合,在促进环化过程中是有效的。该反应被认为是通过烯胺对铑亚乙烯基进行分子内亲核攻击,随后是碱介导的质子转移过程。发现碱在该转化中起关键作用,这表明质子迁移是催化循环的一个组成部分。高转化率需要非质子极性溶剂,这表明两性离子中间体的存在。本反应对于高效合成各种六元氮杂环应是有用的,这些六元氮杂环是许多天然分离物和药物的重要结构基序。