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On the Role of Pre-and Post-Electron-Transfer Steps in the SmI_2/ Amine/H_2O-Mediated Reduction of Esters: New Mechanistic Insights and Kinetic Studies

机译:电子转移前后步骤在SmI_2 /胺/ H_2O介导的酯还原反应中的作用:新的机理研究和动力学研究

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摘要

The mechanism of the SmI_2-mediated reduction of unactivated esters has been studied using a combination of kinetic, radical clocks and reactivity experiments. The kinetic data indicate that all reaction components(SmI2, amine, H_2O) are involved in the rate equation and that electron transfer is facilitated by Br?nsted base assisted deprotonation of water in the transition state. The use of validated cyclopropyl-containing radical clocks demonstrates that the reaction occurs via fast, reversible first electron transfer, and that the electron transfer from simple Sm(II) complexes to aliphatic esters is rapid. Notably, the mechanistic details presented herein indicate that complexation between SmI_2, H_2O and amines affords a new class of structurally diverse, thermodynamically powerful reductants for efficient electron transfer to carboxylic acid derivatives as an attractive alternative to the classical hydride-mediated reductions and as a source of acyl-radical equivalents for C-C bond forming processes.
机译:结合动力学,自由基钟和反应性实验研究了SmI_2介导的未活化酯还原的机理。动力学数据表明速率方程涉及所有反应组分(SmI2,胺,H_2O),并且过渡态的布朗斯台德碱辅助水去质子化促进了电子转移。使用经过验证的含环丙基的自由基钟表明,反应是通过快速,可逆的第一电子转移发生的,并且电子从简单的Sm(II)配合物到脂肪族酯的转移是快速的。值得注意的是,本文提供的机理细节表明SmI_2,H_2O与胺之间的络合作用提供了一类结构多样,热力学有效的还原剂,可有效地将电子有效转移至羧酸衍生物,作为传统氢化物介导的还原反应的有吸引力的替代方法,并可作为来源CC键形成过程的酰基自由基当量。

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