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NN-Dimethylation of nitrobenzenes with CO2 and water by electrocatalysis

机译:电催化将硝基苯与水和二氧化碳进行NN-二甲基化

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摘要

We have proposed a strategy for the synthesis of N,N-dimethylanilines from nitrobenzene and its derivatives, CO2, and water via an electrochemical reaction under ambient conditions. H+ generated from H2O was used as the hydrogen source. Pd/Co–N/carbon, in which the Pd nanoparticles were supported on Co–N/carbon, was designed and used as the electrocatalyst. It was found that the electrocatalyst was very efficient for the reaction in MeCN solution with 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([Bmim]Tf2N) as the supporting electrolyte and 1-amino-methylphosphonic acid (AMPA) as the thermal co-catalyst. A series of control experiments showed that Pd/Co–N/carbon and AMPA cooperated very well in accelerating the reaction. This synthetic route has some obvious advantages, such as using CO2 and water as the reactants, ambient reaction conditions, and high yields of the desired products. This opens up a way to synthesize chemicals by the combination of an electrocatalyst and a thermal catalyst with organic compounds, CO2, and water as the reactants.
机译:我们提出了一种在环境条件下通过电化学反应由硝基苯及其衍生物,CO2和水合成N,N-二甲基苯胺的策略。由H 2 O产生的H + 用作氢源。设计了Pd / Co-N /碳,其中Pd纳米颗粒负载在Co-N /碳上,并用作电催化剂。发现该电催化剂对于在MeCN溶液中以1-丁基-3-甲基咪唑鎓双(三氟甲基磺酰基)酰亚胺([Bmim] Tf2N)作为支持电解质和1-氨基甲基膦酸(AMPA)的反应非常有效。热助催化剂。一系列对照实验表明,Pd / Co-N /碳和AMPA在加速反应方面效果很好。该合成路线具有一些明显的优势,例如使用CO2和水作为反应物,环境反应条件以及所需产物的高收率。这通过电催化剂和热催化剂与有机化合物,CO2和水作为反应物的组合,开辟了一种合成化学物质的方法。

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