Keyphrases
Highly Active
100%
Reduction Temperature
100%
Oxide-based
100%
Oxygen Electrode
100%
Reversible Solid Oxide Cell (rSOC)
100%
Doped Bismuth Oxide
100%
Double-doped
100%
Highly Durable
100%
La0.8Sr0.2MnO3
50%
High Performance
33%
Intermediate Temperature
33%
Solid Oxide Cells
33%
Stabilized Bismuth Oxide
33%
Oxygen Reduction Reaction
16%
Highly Stable
16%
Electrolysis
16%
High Conductivity
16%
Fuel Cell
16%
Rational Design
16%
Reaction Kinetics
16%
Oxygen Ions
16%
Doping Strategy
16%
Stable Oxygen Isotopes
16%
Active Oxygen
16%
Surface Diffusion
16%
Energy Storage Applications
16%
Surface Enhancement
16%
High Ionic Conductivity
16%
Yttria-stabilized Zirconia
16%
Material Selection
16%
Ion Kinetics
16%
Buffer Layer
16%
Rare Earth
16%
Ceria-based Materials
16%
Solid-state Energy Conversion
16%
Yttria-stabilized Zirconia Electrolyte
16%
Design Selection
16%
Zirconium-based Materials
16%
Energy Conversion Applications
16%
Doped Bi2O3
16%
Double Doping
16%
Oxygen Surface Kinetics
16%
Engineering
Reduced Temperature
100%
Durables
100%
Oxygen Electrode
100%
Intermediate Temperature
33%
Yttria-Stabilised Zirconia
33%
Energy Storage and Conversion
16%
Stabilized Material
16%
Surface Kinetics
16%
Fuel Cell
16%
Oxygen Reduction Reaction
16%
Buffer Layer
16%
Oxygen Ion
16%
Material Science
Bismuth
100%
Oxide Compound
100%
Yttria Stabilized Zirconia
25%
Ionic Conductivity
12%
Zirconia
12%
Surface Diffusion
12%
Cerium Oxide
12%
Material Selection
12%
Buffer Layer
12%