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Single-Chamber Solid Oxide Fuel Cell Technology—From Its Origins to Today’s State of the Art

doi: 10.3390/en3010057
Single-Chamber Solid Oxide Fuel Cell Technology—From Its Origins to Today’s State of the Art
In single-chamber solid oxide fuel cells (SC-SOFCs), both anode and cathode are situated in a common gas chamber and are exposed to a mixture of fuel and oxidant. The working principle is based on the difference in catalytic activity of the electrodes for the respective anodic and cathodic reactions. The resulting difference in oxygen partial pressure between the electrodes leads to the generation of an open circuit voltage. Progress in SC-SOFC technology has enabled the generation of power outputs comparable to those of conventional SOFCs. This paper provides a detailed review of the development of SC-SOFC technology.
- Biomolécules : Conception, Isolement, Synthèse France
- Tohoku University Japan
- Polytechnique Montréal Canada
- Polytechnique Montréal Canada
- University of Poitiers France
cathode, Technology, anode, single-chamber, electrolyte, solid oxide fuel cell; single-chamber; mixed-reactant; anode; cathode; electrolyte, solid oxide fuel cell, mixed-reactant, T, jel: jel:Q40, jel: jel:Q, jel: jel:Q43, jel: jel:Q42, jel: jel:Q41, jel: jel:Q48, jel: jel:Q47, jel: jel:Q49, jel: jel:Q0, jel: jel:Q4
cathode, Technology, anode, single-chamber, electrolyte, solid oxide fuel cell; single-chamber; mixed-reactant; anode; cathode; electrolyte, solid oxide fuel cell, mixed-reactant, T, jel: jel:Q40, jel: jel:Q, jel: jel:Q43, jel: jel:Q42, jel: jel:Q41, jel: jel:Q48, jel: jel:Q47, jel: jel:Q49, jel: jel:Q0, jel: jel:Q4
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