Factors governing oxygen reduction in solid oxide fuel cell cathodes.
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Summary
These advances have led to dozens of active SOFC development programs in both stationary and mobile power and contributed to commercialization or development in a number of related technologies, including gas sensors, solid-state electrolysis devices, and iontransport membranes for gas separation and partial oxidation.
- Type
- review
- Published
- 2004-10-13
- Cited by
- 2,180
- References
- 7
- OpenAlex
- https://openalex.org/W2032149933
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9483856
Keywords
Citation, Oxygen reduction, Computer science, Reuse, Icon
References
- Electrochemical Kinetics: Theoretical and Experimental Aspects
- High-temperature interfacial reactivity of LaMnO3±δ nanometric films on (100)YSZ
- Papel de la posición del electrodo de referencia en las medidas de sobrepotencial
- Solid oxide fuel cells.
- Atomic Transport in Solids: List of principal symbols
- Comment on “Electrode Kinetics of Porous Mixed‐Conducting Oxygen Electrodes” [S. B. Adler, J. A. Lane, and B. C. H. Steel (pp. 3554–3564, Vol. 143, No. 11, 1996)]
- Atomic transport in solids
- SOFC空気極の経時劣化後の微構造の変化
- Fundamental Issues in Modeling of Mixed‐Conductors. Rebuttal to “Comment on ‘Electrode Kinetics of Porous Mixed‐Conducting Oxygen Electrodes’” [S. B. Adler, J. A. Lane, and B. C. H. Steel (pp. 3554–3564, Vol. 143, No. 11, 1996)]
- Impedance Spectroscopy: Emphasizing Solid Materials and Systems
Cited by
- Modelling-Assisted Investigation of Degradation Phenomena in LSM-based SOFC Composite Cathodes
- Conception, élaboration et caractérisation de matériaux de composition et de microstructure innovants pour les micro-piles à combustible à oxyde solide
- Decoupling electrochemical reaction and diffusion processes in ionically-conductive solids on the nanometer scale.
- Improved controlled atmosphere high temperature scanning probe microscope.
- SrFe0.8Mo0.2O3-δ: Cathode material for intermediate temperature solid oxide fuel cells
- High-Performance Solid Oxide Fuel Cell with an Electrochemically Surface-Tailored Oxygen Electrode.
- Structures and Properties of LaFe0.8Cu0.2O3−δ and BaFe0.8Cu0.2O3−δ as Cobalt‐Free Perovskite‐Type Cathode Materials for the Oxygen Reduction Reaction
- Inkjet Printing Functionalization of SOFC LSCF Cathodes
- Air side contamination in Solid Oxide Fuel Cell stack testing
- Mechanisms for charge-transfer processes at electrode/solid-electrolyte interfaces.
- High performance La2NiO4+δ-infiltrated (La0.6Sr0.4)0.995Co0.2Fe0.8O3−δ cathode for solid oxide fuel cells
- Development of a novel high temperature crystal microbalance in-situ sensor for the study of electrode processes in solid oxide fuel cells
- Synthesis and characterization of perovskite-type SrxY1−xFeO3−δ (0.63≤x<1.0) and Sr0.75Y0.25Fe1−yMyO3−δ (M=Cr, Mn, Ni), (y=0.2, 0.33, 0.5)
- Multi-Physicochemical Modeling of Solid Oxide Fuel Cells and Electrolyzer Cells
- Improving La0.6Sr0.4Co0.2Fe0.8O3 − δ cathode performance by infiltration of a Sm0.5Sr0.5CoO3 − δ coating
- Activation and Deactivation Kinetics of Oxygen Reduction over a La0.8Sr0.2Sc0.1Mn0.9O3 Cathode
- Aerosol Jet Deposition of Samarium-doped Ceria Films
- Oxygen surface exchange properties of La0.6Sr0.4Co0.8Fe0.2O3 − δ coated with SmxCe1 − xO2 − δ
- Effect of carbonate addition on cobaltite cathode performance
- Characterization of Ba-deficient PrBa1−xCo2O5+δ as cathode material for intermediate temperature solid oxide fuel cells
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