首页> 外文期刊>The Journal of Organic Chemistry >Highly Chemoselective Reductive Amination of Carbonyl Compounds Promoted by InCl3/Et3SiH/MeOH System
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Highly Chemoselective Reductive Amination of Carbonyl Compounds Promoted by InCl3/Et3SiH/MeOH System

机译:InCl3 / Et3SiH / MeOH体系促进的羰基化合物的高化学选择性还原胺化

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摘要

A new strategy has been developed for reductive amination of aldehydes and ketones with the InCl3/Et3SiH/MeOH system, which is a nontoxic system with highly chemoselective and nonwater sensitive properties. The methodology can be applied to a variety of cyclic, acyclic, aromatic, and aliphatic amines. Functionalities including ester, hydroxyl, carboxylic acid, and olefin are found to be stable under our conditions. The reaction shows a first-order kinetics profile with respect to both InCl3 and Et3SiH. Spectroscopic techniques such as NMR and ESI-MS have been employed to probe the active and resulting species arising from InCl3 and Et3SiH in MeOH, which are important in deriving a mechanistic proposal. In the ESI-MS studies, we have first discovered the existence of stable methanol-coordinated indium(III) species which are presumably responsible for the gentle generation of indium hydride at room temperature. The solvent attribution was crucial in tuning the reactivity of [In-H] species, leading to the establishment of mild reaction conditions. The system is superior in flexible tuning of hydride reactivity, resulting in the system being highly chemoselective.
机译:已经开发出一种新的策略,用于使用InCl3 / Et3SiH / MeOH系统进行醛和酮的还原胺化反应,该系统是一种具有高度化学选择性和非水敏感性的无毒系统。该方法可以应用于各种环状,无环,芳族和脂族胺。发现在我们的条件下,包括酯,羟基,羧酸和烯烃在内的官能团是稳定的。该反应相对于InCl 3和Et 3 SiH均显示出一级动力学曲线。已经采用了诸如NMR和ESI-MS之类的光谱技术来探查MeOH中InCl3和Et3SiH所产生的活性物种和所得物种,这对于推导机理很重要。在ESI-MS研究中,我们首先发现了稳定的甲醇配位的铟(III)物种,这可能是室温下氢化铟的温和生成的原因。溶剂的归属对于调节[In-H]物种的反应性至关重要,从而建立了温和的反应条件。该系统在灵活调整氢化物反应性方面具有优势,从而使该系统具有高度的化学选择性。

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