The preparative electrochemical reduction of mtrobenzene, phenylhydroxylamme, azoxybenzene, azobenzene, and hydrazobenzene was studled under controlled potential con&ions at Devarda copper and Raney nickel electrodes m neutral (E= -0 6 V us see) and basic (E= -10 V us see) aqueous methanohc solution
The electrochemical reduction of nitrobenzene and azoxybenzene in neutral and basic aqueous methanolic solutions at polycrystalline copper and nickel electrodes
✍ Scribed by André Cyr; Pierre Huot; Jean-François Marcoux; Gérard Belot; E. Laviron; Jean Lessard
- Publisher
- Elsevier Science
- Year
- 1989
- Tongue
- English
- Weight
- 720 KB
- Volume
- 34
- Category
- Article
- ISSN
- 0013-4686
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✦ Synopsis
The electrochemical reduction of nitrobenzene, axoxybenzene, azobenxene, phenylhydroxylamine and hydrazobenzene was studied at polycrystalline copper and nickel electrodes in neutral and basic aqueous methanolic solutions. Electronation of nitrobenxene, axe-and axoxybenxene was observed by voltammetry before the discharge potential of the medium whereas no wave obtained in the case of phenylhydroxylamine and hydrazobanmne. Under preparative electrolysis conditions, nitrohenzene gave a mixture of phenylhydroxylamine and aniline; the proportion of aniline increased when decreasing the potential even beyond the discharge potential of the medium and was larger at copper than at nickel electrodes. The reduction of phenylhydroxylamine to aniline under the same conditions did not go to completion.
The reduction of aZoxybenxene and azobenmne stopped at hydraxobenxene. An electrocatalytic hydrogenation mechanism is proposed for the reduction of phenylhydroxylamine to aniline. Aniline would be adsorbed on the surface and impede the catalytic process.
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