• Title of article

    High-frequency sonoelectrochemical processes: mass transport, thermal and surface effects induced by cavitation in a 500 kHz reactor

  • Author/Authors

    Del Campo، نويسنده , , F.Javier and Coles، نويسنده , , B.A. and Marken، نويسنده , , Stephen F. and Compton، نويسنده , , R.G. and Cordemans، نويسنده , , E.، نويسنده ,

  • Pages
    9
  • From page
    189
  • To page
    197
  • Abstract
    The use of high frequency ultrasound in electrochemical systems is of major interest for the optimisation of electrosynthetic and electroanalytical procedures, especially when the strong mechanical effects of 20 kHz ultrasound are detrimental. The characterisation of a 500 kHz ultrasound reactor for sonoelectrochemical experiments by voltammetric and potentiometric measurements revealed the presence of considerable thermal, as well as mass transport, effects depending on geometric parameters and the material used for the construction of the working electrode. Micromixing and cavitation processes govern the mass transport to and from the electrode surface and are shown by atomic force microscopy (AFM) to cause erosion on the electrode surface. Electrochemically active films of Prussian blue are shown to be gradually removed by cavitation erosion. Degassing the solution prior to sonication increases the efficiency of cavitation processes.
  • Keywords
    Modified electrode , mass transport , frequency effect , Cavitation , Prussian blue , Micromixing , Sonoelectrochemistry , Catalyst
  • Journal title
    Astroparticle Physics
  • Record number

    2005447