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Observation of the surface stress induced in microcantilevers by electrochemical redox processes

  • F. Tian
  • , J. H. Pei
  • , D. L. Hedden
  • , G. M. Brown
  • , T. Thundat
  • Oak Ridge National Laboratory
  • VA Medical Center

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

The potential-induced surface stress of a solid electrode was investigated in an electrochemical cell. Gold-coated atomic force microscopy microcantilevers were used as working electrodes to measure the current-potential response (by cyclic voltammetry) and simultaneous bending characteristics in solutions of NaNO3 and K3Fe(CN)6/NaNO3. The observed changes of differential surface stress at a microcantilever electrode were attributed to electrochemical-potential-induced changes in surface charge density, ion adsorption/desorption, and electron transfer across the electrode surface. The potential dependent change in stress shows promise for the study of microscopic properties at the solid-electrolyte interface.

Original languageEnglish
Pages (from-to)217-223
Number of pages7
JournalUltramicroscopy
Volume100
Issue number3-4
DOIs
StatePublished - Aug 2004

Keywords

  • 07.79.Lh
  • 18
  • 68.37.Ps
  • Deflection
  • Electrochemical potential
  • Microcantilever
  • Surface stress

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