化学
高价分子
SN2反应
催化作用
基质(水族馆)
组合化学
配体(生物化学)
甲烷氧化偶联
碘
反应机理
计算化学
还原消去
药物化学
有机化学
受体
地质学
海洋学
生物化学
作者
Smaher E Butt,Mirdyul Das,Jean‐Marc Sotiropoulos,Wesley J. Moran
标识
DOI:10.1021/acs.joc.9b02623
摘要
Previous experimental work identified 2-iodoanisole as the best precatalyst for the oxidative cyclization of N-alkenylamides into 2-oxazolines. Herein, we describe our investigation into the effect on the reaction rate based on the structure of the iodoarene precatalyst. We also reveal the mechanism of the cyclization based on DFT modeling and obtain a clear correlation between observed reaction rates and computationally derived activation energies for different iodoarenes. In addition, the rate-limiting step is shown to be the cyclization of the substrate that is zero order in the concentration of the iodoarene precatalyst. The rate of cyclization is found to correlate with the ease of oxidation of the iodoarene; however, the most easily oxidized iodoarenes generate iodine(III) species that decompose readily. Finally, loss of iodoarene from the cyclized intermediate can proceed by either ligand-coupling or SN2 displacement (reductive elimination), and this is shown to be substrate-dependent.
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