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Research on nanostructured fuel cell electrodes has recently been growing significantly.
High-performance fuel cell electrodes require architectures that offer appropriate electrochemical and nanoscopic catalytic reaction zones.
Fuel cell electrodes, gas sensors and photocatalytic films are emphasized as significant applications.
As example, magnetron sputtering deposition is successfully used for growing fuel cell electrodes with high performances.
IEA Workshop, Les Diablerets, Switzerland, January 1997, p. 196) for cermet solid oxide fuel cell electrodes.
Core shell catalysts have also been fabricated with RSDT for fuel cell electrodes with good performance.
Fuel cell electrodes with large amounts of pores exhibit 30% improved single cell performance.
The performances of the electrodes have been compared with that of the single cell electrodes of area 4 cm2.
Two heat exchanger networks are designed considering the influence of the fuel utilization coefficient (0.7 0.9) at the cell electrodes.
Effective diffusion coefficients were measured for a variety of thin fibrous graphite paper materials typically used in fuel cell electrodes.
It is used as catalyst [4], photocatalyst [5], absorbent, dental cement manufacturing, solar cell electrodes [6] and gas sensors [7, 8].
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