Issue 39, 2010

Visualization of oxygenreduction sites at Ptelectrodes on YSZ by means of 18Otracer incorporation: the width of the electrochemically active zone

Abstract

In this study the electrochemically active region of oxygen incorporation into yttria stabilized zirconia (YSZ) was visualized by means of 18O tracer incorporation experiments on dense Pt thin film microelectrodes combined with ToF-SIMS analysis. The localization and the shape of the incorporation zone were found to strongly depend on the polarization of the electrode. In case of lower overpotentials the active zone next to the three phase boundary (TPB) was frame-shaped and located beneath the Pt electrode. Increases in polarization led to an extension of the incorporation zone along the free YSZ surface. Owing to the low temperature of 300–330 °C a profile-broadening caused by diffusion in YSZ could be minimized and quantitatively separated from the measured profiles. The TPB-width (i.e. the decay length of electrochemical activity) was determined to be approximately 1.0–1.3 μm at these temperatures.

Graphical abstract: Visualization of oxygen reduction sites at Pt electrodes on YSZ by means of 18O tracer incorporation: the width of the electrochemically active zone

Article information

Article type
Paper
Submitted
21 Apr 2010
Accepted
28 Jun 2010
First published
25 Aug 2010

Phys. Chem. Chem. Phys., 2010,12, 12734-12745

Visualization of oxygen reduction sites at Pt electrodes on YSZ by means of 18O tracer incorporation: the width of the electrochemically active zone

A. K. Opitz, A. Schintlmeister, H. Hutter and J. Fleig, Phys. Chem. Chem. Phys., 2010, 12, 12734 DOI: 10.1039/C0CP00309C

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