Are you an EPFL student looking for a semester project?
Work with us on data science and visualisation projects, and deploy your project as an app on top of Graph Search.
Micro-solid oxide fuel cell (mu SOFC) structures with annular Pt electrodes have been fabricated by means of silicon micromachining. The annular cathodes contained a defined triple phase boundary (TPB) length, which allowed the derivation of the ionic current per length of TPB as 1.24 mA m(-1), measured at 450 degrees C at maximal power. Considering literature values for oxygen diffusion activation on Pt, the active zone supplying atomic oxygen to the triple phase boundary was calculated to be 22 nm wide at most. The anode function was provided by a CGO layer, known to be electrically conductive at reducing conditions, with annular Pt current collector. The TPB length was increased by adding a Pt-YSZ composite cathode layer covering the complete YSZ/CGO membrane. The peak power density was increased by a factor of 5 to reach 5 mW cm(-2) with an open circuit voltage of 0.68V at 450 degrees C. It was observed that the Pt grains re-crystallized to large grains, leading to a loss of electrical connectivity in the composite layer. The composite cathode layer was thus inadequate to contact the complete membrane area, leading to a too large area specific resistance (ASR) in the interior of the cell. (C) 2012 Elsevier B.V. All rights reserved.
Hubert Girault, Wanderson Oliveira Da Silva, Victor Costa Bassetto, Solène Cindy Gentil
Jan Van Herle, Marco Cantoni, Guillaume Jeanmonod, Lucie Navratilova, Arata Nakajo, Priscilla Caliandro, Giorgio Rinaldi