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TEMPO/HCl/NaNO2 catalyst: A transition-metal-free approach to efficient aerobic oxidation of alcohols to aldehydes and ketones under mild conditions

机译:TEMPO / HCl / NaNO2催化剂:一种无过渡金属的方法,可在温和条件下有效地将酒精好氧氧化为醛和酮

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摘要

Hydrochloric acid, a very inexpensive and readily available inorganic acid, has been found to cooperate exquisitely with NaNO2/TEMPO in catalyzing the molecular-oxygen-driven oxidation of a broad range of alcohol substrates to the corresponding aldehydes and ketones. This transitionmetal-free catalytic oxidative conversion is novel and represents an interesting alternative route to the corresponding carbonyl compounds to the metal-catalyzed aerobic oxidation of alcohols. The reaction is highly selective with respect to the desired product when carried out at room temperature in air at atmospheric pressure. Notably, the use of very inexpensive NaNO2 and HCl in combination with TEMPO for this highly selective aerobic oxidation of alcohols in air at ambient temperature makes the reaction operationally and economically very attractive. ne results of mechanistic studies, performed with the aid of electrospray ionization mass spectrometry (ESI-MS), are presented and discussed. TEMPO, TEMPOH, and TEMPO+ were observed in the redox cycle by means of ESI-MS. On the basis of these observations, a mechanism is proposed that may provide an insight into the newly developed aerobic alcohol oxidation.
机译:已发现盐酸是一种非常便宜且易于获得的无机酸,可与NaNO2 / TEMPO完美地协同作用,催化分子氧驱动的多种醇底物氧化为相应的醛和酮。这种无过渡金属的催化氧化转化是新颖的,代表了相应的羰基化合物在金属催化的醇的好氧氧化中的有趣替代途径。当在室温下在大气中于室温下进行时,该反应对于所需产物具有高度选择性。值得注意的是,使用非常便宜的NaNO2和HCl与TEMPO结合使用,可以在环境温度下对空气中的酒精进行高度选择性的好氧氧化,使该反应在操作上和经济上都非常有吸引力。介绍并讨论了借助电喷雾电离质谱(ESI-MS)进行的机理研究的结果。通过ESI-MS在氧化还原循环中观察到TEMPO,TEMPOH和TEMPO +。基于这些观察,提出了一种机制,可以提供对新近发展的好氧醇氧化的见解。

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