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首页> 外文期刊>International Journal of Electrochemical Science >Cu-Ni Alloy Catalyzed Electrochemical Carboxylation of Benzyl Bromide with Carbon Dioxide in Ionic Liquid 1-Butyl-3- methylimidazolium tetrafluoroborate
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Cu-Ni Alloy Catalyzed Electrochemical Carboxylation of Benzyl Bromide with Carbon Dioxide in Ionic Liquid 1-Butyl-3- methylimidazolium tetrafluoroborate

机译:Cu-Ni合金在离子液体1-丁基-3-甲基咪唑四氟硼酸根中的二氧化碳催化苄基溴的电化学羧化

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摘要

A novel, direct and efficient electroreduction method of benzyl bromide in ionic liquid BMIMBF4 has been developed by potentiostatic electrolysis. Under the atmospheric pressure of CO2, the electrosynthesis was performed in an undivided cell with Cu-Ni cathode and Al anode. A moderate yield (39.4%) of ethyl phenylacetate 1 as the principal product was obtained, accompanied astonishingly by yield (4.6%) of benzyl ether 2. Synthetic factors such as electrode material, working potential and electric charge were found to influence the carboxylation yields. The results indicate that the porous structure Cu-Ni alloy electrode with different adsorption energies for CO2 and benzyl bromide played an ensemble effect role in the reaction efficiency and products distribution. Moreover, the ionic liquid was successfully recycled and a plausible reaction mechanism was proposed.
机译:通过恒电位电解,开发了一种新颖,直接,高效的离子液体BMIMBF4中苄基溴的电还原方法。在CO2的大气压下,在具有Cu-Ni阴极和Al阳极的不分隔电池中进行电合成。获得了中等收率(39.4%)的苯乙酸乙酯1作为主要产物,惊人地伴随着苄基醚2的收率(4.6%)。发现诸如电极材料,工作电势和电荷等合成因素会影响羧化收率。结果表明,多孔结构的Cu-Ni合金电极对CO2和苄基溴具有不同的吸附能,对反应效率和产物分布起整体作用。此外,离子液体已成功回收,并提出了合理的反应机理。

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