Chem. J. Chinese Universities

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Selective Electrochemical Reduction of Nitrobenzene in Ionic Liquid EMimBF4

CHEN Song1,2, MA Chun-An1*, CHU You-Qun1, MAO Xin-Biao1   

    1. College of Chemical Engineering and Materials Science, Zhejiang University of Technology, Hangzhou 310014, China;
    2. Institute of Applied Chemistry, Yancheng Institute of Technology, Yancheng 224002, China
  • Received:2007-03-01 Revised:1900-01-01 Online:2007-10-10 Published:2007-10-10
  • Contact: MA Chun-An

Abstract: The electroreduction of nitrobenzene in room temperature ionic liquidEMimBF4 on Pt electrode was investigated. The experimental results from cyclic voltammetry and constant-potential electrolysis show that the mechanism of the reaction was two molecules and three steps electrochemical process with eight-electrons transferred: anion radical arose in the first step; two-electrons were transferred in the second step and accompanied with coupling reaction of radicals and protonation and dehydrate, the main product was azoxybenzene; two-electrons were transferred in the third step, and azobenzene was achieved. The stronge interaction between EMimBF4 and nitrobenzene, and its intermediates yielded in the process of electroreduction caused the selective reaction. By controlling the reduction potential, the electroreduction of nitrobenzene to azoxybenzene and azobenzene had a high selectivity and high conversion. The concentrations of nitrobenzene and water in EMimBF4 have great effect on the electrochemical behavior. With the increasing of nitrobenzene concentration, the electroreduction peak potential of cyclic voltammogram around -1.47 V was shifted to negative value, and the current density was increased, as well as the water had reversed effect on the electroreduction peak potential, and increased current density.

Key words: Nitrobenzene, EMimBF4, Electroreduction, Green chemistry, Selectivity

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