Three-Dimensional Nanostructured Bilayer Solid Oxide Fuel Cell with 1.3 W/cm(2) at 450 degrees C

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초록

Obtaining high power density at low operating temperatures has been an ongoing challenge in solid oxide fuel cells (SOFC), which are efficient engines to generate electrical energy from fuels. Here we report successful demonstration of a thin-film three-dimensional (3-D) SOFC architecture achieving a peak power density of 1.3 W/cm(2) obtained at 450 degrees C. This is made possible by nanostructuring of the ultrathin (60 nm) electrolyte interposed with a nanogranular catalytic interlayer at the cathode/electrolyte interface. We attribute the superior cell performance to significant reduction in both the ohmic and the polarization losses due to the combined effects of employing an ultrathin film electrolyte, enhancement of effective area by 3-D architecture, and superior catalytic activity by the ceria-based interlayer at the cathode. These insights will help design high-efficiency SOFCs that operate at low temperatures with power densities that are of practical significance.

키워드

Solid oxide fuel cellsmicro solid oxide fuel cellslow temperature solid oxide fuel cellsdoped-ceria interlayeratomic layer depositionnanosphere lithographyDOPED CERIA INTERLAYERSATOMIC LAYER DEPOSITIONLOW-TEMPERATUREHIGH-PERFORMANCEFILMTRANSPORTELECTROLYTEMEMBRANESEXCHANGESOFC
제목
Three-Dimensional Nanostructured Bilayer Solid Oxide Fuel Cell with 1.3 W/cm(2) at 450 degrees C
저자
An, JihwanKim, Young-BeomPark, JoonsukGuer, Turgut M.Prinz, Fritz B.
DOI
10.1021/nl402661p
발행일
2013-09
유형
Article
저널명
Nano Letters
13
9
페이지
4551 ~ 4555