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Dehydrogenative Synthesis of Carboxylic Acids from Primary Alcohols and Hydroxide Catalyzed by a Ruthenium N-Heterocyclic Carbene Complex

机译:钌N-杂环卡宾配合物催化由伯醇和氢氧化物脱氢合成羧酸

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摘要

Primary alcohols have been reacted with hydroxide and the ruthenium complex [RuCl2(IiPr)(p-cymene)] to afford carboxylic acids and dihydrogen. The dehydrogenative reaction is performed in toluene, which allows for a simple isolation of the products by precipitation and extraction. The transformation can be applied to a range of benzylic and saturated aliphatic alcohols containing halide and (thio)ether substituents, while olefins and ester groups are not compatible with the reaction conditions. Benzylic alcohols undergo faster conversion than other substrates, and a competing Cannizzaro reaction is most likely involved in this case. The kinetic isotope effect was determined to be 0.67 using 1-butanol as the substrate. A plausible catalytic cycle was characterized by DFT/B3LYP-D3 and involved coordination of the alcohol to the metal, β-hydride elimination, hydroxide attack on the coordinated aldehyde, and a second β-hydride elimination to furnish the carboxylate.
机译:伯醇已经与氢氧化物和钌配合物[RuCl2(IiPr)(对-甲基异丙基苯)]反应生成羧酸和二氢。脱氢反应在甲苯中进行,这允许通过沉淀和萃取将产物简单分离。该转化可应用于一系列含有卤化物和(硫)醚取代基的苄基和饱和脂族醇,而烯烃和酯基与反应条件不相容。苄醇比其他底物经历更快的转化,这种情况下极有可能参与竞争Cannizzaro反应。使用1-丁醇作为底物测定的动力学同位素效应为0.67。合理的催化循环的特征是DFT / B3LYP-D3,涉及醇与金属的配位,β-氢化物的消除,氢氧化物对配位醛的侵蚀以及第二次β-氢化物的消除以提供羧酸盐。

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