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Aerobic selective oxidation of (hetero) aromatic primary alcohols to aldehydes or carboxylic acids over carbon supported platinum

机译:碳载铂上的(杂)芳族伯醇有氧选择性氧化为醛或羧酸

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摘要

The synthesis of substituted benzaldehydes, benzoic acids, heterocyclic aromatic aldehydes and acids has been studied via the oxidation of the aromatic alcohols with air under mild pressure (< 20 bar) at 100 degrees C, in the presence of a 1.95 wt.% PUC catalyst. The solvent was found to play the most important role in determining the selectivity of the oxidation products. Changing the solvent enabled tuning the reaction either to the aldehyde (pure dioxane), or the carboxylic acid (dioxane/aqueous solution without or with addition of sodium hydroxide). This oxidation method allowed to effectively oxidize many substituted benzylalcohols with various electron-releasing or -attracting groups (NO2, Me, OMe, Cl, Br, OH, phenyl,...) and heterocyclic alcohols including nitrogen and sulphur atoms (2-thiophenemethanol, 2- and 4-pyridine methanol compounds). (c) 2006 Elsevier B.V. All rights reserved.
机译:通过在1.95 wt。%PUC催化剂存在下于100摄氏度在适度压力(<20 bar)下用空气将芳族醇氧化,研究了取代的苯甲醛,苯甲酸,杂环芳族醛和酸的合成。发现溶剂在确定氧化产物的选择性中起最重要的作用。改变溶剂可使反应调节为醛(纯二恶烷)或羧酸(不加或加氢氧化钠的二恶烷/水溶液)。这种氧化方法可以有效地氧化许多带有各种电子释放或吸引基团(NO2,Me,OMe,Cl,Br,OH,苯基等)的取代的苄醇以及包括氮和硫原子的杂环醇(2-硫代苯二甲醇) ,2-和4-吡啶甲醇化合物)。 (c)2006 Elsevier B.V.保留所有权利。

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