Eckert Matthieu, Monnier Florian, Shchetnikov Grigorii T, Titanyuk Igor D, Osipov Serguej N, Toupet Loïc, Dérien Sylvie, Dixneuf Pierre H
Institut de Chimie de Rennes, UMR 6509 CNRS-Université de Rennes 1, Campus de Beaulieu, 35042 Rennes Cedex, France.
Org Lett. 2005 Aug 18;7(17):3741-3. doi: 10.1021/ol051393f.
The reaction of diazo compounds with enynes, containing a fluorinated amino acid moiety, in the presence of the precatalyst Cp(Cl)Ru(COD) leads to fluorinated alkenyl bicyclo[3.1.0]hexane and [4.1.0]heptane amino acid derivatives. It is remarkable that the catalyst, in situ generated from ruthenium complex and diazo compound, completely inhibits the ring closing metathesis of enyne to the profit of tandem alkenylation/cyclopropanation with high stereoselectivity. The study shows that the Cp(Cl)Ru moiety in ruthenacyclobutane favors reductive elimination versus expected alkene metathesis. [reaction: see text]
在预催化剂Cp(Cl)Ru(COD)存在下,重氮化合物与含有氟化氨基酸部分的烯炔反应,生成氟化烯基双环[3.1.0]己烷和[4.1.0]庚烷氨基酸衍生物。值得注意的是,由钌配合物和重氮化合物原位生成的催化剂完全抑制了烯炔的闭环复分解反应,有利于高立体选择性的串联烯基化/环丙烷化反应。研究表明,钌杂环丁烷中的Cp(Cl)Ru部分相比于预期的烯烃复分解反应更有利于还原消除反应。[反应:见正文]