Colladon Marco, Scarso Alessandro, Sgarbossa Paolo, Michelin Rino A, Strukul Giorgio
Dipartimento di Chimica, Università Ca' Foscari di Venezia, Dorsoduro 2137, I-30123 Venice, Italy.
J Am Chem Soc. 2007 Jun 20;129(24):7680-9. doi: 10.1021/ja071142x. Epub 2007 May 27.
Recently developed electron-poor Pt(II) catalyst 1 with the "green" oxidant 35% hydrogen peroxide displays high activity and complete substrate selectivity in the epoxidation of terminal alkenes because of stringent steric and electronic requirements. In the presence of isolated dienes bearing terminal and internal double bonds, epoxidation is completely regioselective toward the production of terminal epoxides. Insight into the mechanism is gained by means of a reaction progress kinetic analysis approach that underlines the peculiar role of 1 in activating both the alkene and H2O2 in the rate-determining step providing a rare example of nucleophilic oxidation of alkenes by H2O2.
最近开发的贫电子Pt(II)催化剂1与“绿色”氧化剂35%过氧化氢一起,在末端烯烃的环氧化反应中表现出高活性和完全的底物选择性,这是由于严格的空间和电子要求。在存在带有末端和内部双键的孤立二烯的情况下,环氧化反应对末端环氧化物的生成具有完全的区域选择性。通过反应进程动力学分析方法深入了解了反应机理,该方法强调了1在速率决定步骤中激活烯烃和H2O2的特殊作用,提供了一个H2O2对烯烃进行亲核氧化的罕见例子。