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首页> 外文期刊>Electrochimica Acta >A novel electrosynthesis cell with a compressed graphite powder cathode and minimal organic solvent content: Application to the Reformatsky reaction
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A novel electrosynthesis cell with a compressed graphite powder cathode and minimal organic solvent content: Application to the Reformatsky reaction

机译:具有压缩石墨粉末阴极和极少有机溶剂含量的新型电合成电池:在Reformatsky反应中的应用

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摘要

A Reformatsky reaction has been employed as a model by which to highlight the advantages of a novel type of undivided electrosynthesis cell working with a content of organic solvent at least 10-times lower than that used in conventional cells. The cathode was formed from compressed graphite powder and was impregnated with a mixture of ethyl 2-bromoisobutyrate and benzaldehyde dissolved in a minimal volume of organic solvent. The cell was filled with aqueous KBr solution, and the electrolysis carried out at a constant potential corresponding to the reduction of the bromoester. Several parameters were optimized with respect to the yield of coupling product, including the ratio of bromoester to benzaldehyde, the pressure of compaction of the electrode powder inside the cavity, and the influence of the cathodic material. Ethyl 2,2-dimethyl-3-hydroxy-3-phenylpropionate was obtained in a yield of up to 86%, and ethyl isobutyrate was the only by-product. A number of other model substrates have been investigated in order to determine the scope and limitations of this new methodology.
机译:Reformatsky反应已被用作模型,通过该模型突出了一种新型的未分割电合成电池的优势,该电池的有机溶剂含量比传统电池低至少10倍。阴极由压缩的石墨粉末形成,并用2-溴异丁酸乙酯和苯甲醛的混合物浸渍在最小体积的有机溶剂中。电池充满KBr水溶液,并且在恒定的电势下进行电解,该电势对应于溴酸酯的还原。关于偶合产物的产率,优化了几个参数,包括溴酸酯与苯甲醛的比例,空腔内电极粉末的压实压力以及阴极材料的影响。获得了2,2-二甲基-3-羟基-3-苯基丙酸乙酯,产率高达86%,而异丁酸乙酯是唯一的副产物。为了确定这种新方法的范围和局限性,已经研究了许多其他模型衬底。

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