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Electrocatalytic hydrogenation of acetophenone using a Polymer Electrolyte Membrane Electrochemical Reactor

机译:使用聚合物电解质膜电化学反应器对苯乙酮进行电催化加氢

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摘要

The use of a solid polymeric electrolyte, spe, is not commonly found in organic electrosynthesis despite its inherent advantages such as the possible elimination of the electrolyte entailing simpler purification processes, a smaller sized reactor and lower energetic costs. In order to test if it were possible to use a spe in industrial organic electrosynthesis, we studied the synthesis of 1-phenylethanol through the electrochemical hydrogenation of acetophenone using Pd/C 30 wt% with different loadings as cathode and a hydrogen gas diffusion anode. A Polymer Electrolyte Membrane Electrochemical Reactor, PEMER, with a fuel cell structure was chosen to carry out electrochemical reduction with a view to simplifying an industrial scale-up of the electrochemical process. We studied the influence of current density and cathode catalyst loading on this electroorganic synthesis. Selectivity for 1-phenylethanol was around 90% with only ethylbenzene and hydrogen detected as by-products.
机译:尽管固态聚合电解质具有固有的优势,例如可以消除电解质,从而简化了纯化过程,减小了反应器的尺寸,降低了能源成本,但在有机电合成中并不常见使用固态聚合物电解质spe。为了测试是否可以在工业有机电合成中使用spe,我们研究了使用苯乙酮的30%(重量)的Pd / C作为阴极和氢气扩散阳极,通过苯乙酮的电化学加氢合成1-苯基乙醇的方法。为了简化电化学过程的工业规模化,选择具有燃料电池结构的聚合物电解质膜电化学反应器PEMER进行电化学还原。我们研究了电流密度和阴极催化剂负载量对该电有机合成的影响。 1-苯基乙醇的选择性约为90%,仅检测到乙苯和氢为副产物。

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