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A Recyclable Metal-Free Mechanochemical Approach for the Oxidation of Alcohols to Carboxylic Acids

机译:一种可循环利用的无金属机械化学方法可将醇氧化为羧酸

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摘要

The oxidation of primary alcohols under mechanochemical conditions in a Spex8000M Mixer/Mill was investigated. To facilitate ease of separation and recyclability, a polystyrene-bound version of a TEMPO catalyst was employed. When paired with Oxone in a stainless-steel vial with a stainless-steel ball, several primary alcohols were successfully oxidized to the corresponding carboxylic acids. The product was isolated using gravity filtration, which also allowed for the polystyrene-bound TEMPO catalyst to be recovered and reused in subsequent oxidation reactions. Furthermore, it was demonstrated that the size and steric hindrance of the primary alcohol does not hinder the rate of the reaction. Finally, the aldehyde was selectively obtained from a primary alcohol under ball milling conditions by using a combination of non-supported TEMPO with a copper vial and copper ball.
机译:在Spex8000M Mixer / Mill中,在机械化学条件下研究了伯醇的氧化。为了便于分离和再循环,使用了聚苯乙烯结合型TEMPO催化剂。当在装有不锈钢球的不锈钢小瓶中与Oxone配对时,几种伯醇被成功氧化为相应的羧酸。使用重力过滤分离产物,这也允许回收与聚苯乙烯结合的TEMPO催化剂并在随后的氧化反应中重新使用。此外,已证明伯醇的大小和位阻不妨碍反应速率。最后,通过使用非负载型TEMPO与铜小瓶和铜球的组合,在球磨条件下从伯醇中选择性地获得醛。

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