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首页> 外文期刊>Advanced synthesis & catalysis >Palladium on Carbon-Catalyzed Aqueous Transformation of Primary Alcohols to Carboxylic Acids Based on Dehydrogenation under Mildly Reduced Pressure
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Palladium on Carbon-Catalyzed Aqueous Transformation of Primary Alcohols to Carboxylic Acids Based on Dehydrogenation under Mildly Reduced Pressure

机译:钯在轻度减压下基于脱氢的碳催化碳氢转化伯醇为羧酸

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摘要

The catalytic dehydrogenation of alcohols to carbonyl products is a green sustainable oxidation with no production of waste except for hydrogen, which can be an energy source. Additionally, a reusable heterogeneous catalyst is valuable from the viewpoint of process chemistry and water is a green solvent. We have accomplished the palladium on carbon (Pd/C)-catalyzed dehydrogenation of primary alcohols to carboxylic acids in water under a mildly reduced pressure (800 hPa). The reduced pressure can be easily controlled by the vacuum controller of the rotary evaporator to remove the excess of generated hydrogen, which causes the reduction (reverse reaction) of aldehydes to alcohols (starting materials) and other undesirable side reactions. The present method is applicable to the reaction of various aliphatic and benzylic alcohols to the corresponding carboxylic acids, and the Pd/C could be reused at least 5 times.
机译:醇催化脱氢为羰基产物是一种绿色的可持续氧化反应,除了可以作为能源的氢以外,不产生废物。另外,从过程化学的观点来看,可重复使用的非均相催化剂是有价值的,并且水是绿色溶剂。我们已经在温和的减压(800 hPa)下完成了钯/碳(Pd / C)催化的伯醇到水中羧酸的脱氢反应。旋转蒸发器的真空控制器可以轻松控制减压,以除去过量的氢气,这会导致醛还原(逆反应)为醇(原料)和其他不良副反应。本方法适用于各种脂族和苄醇与相应羧酸的反应,并且Pd / C可重复使用至少5次。

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