Chemistry
Cobalt
100%
Bond Valence Sum Analysis
100%
Relaxation
100%
Oxygen Reduction Reaction
100%
Energy Barrier
100%
Energy Storage
100%
Density Functional Theory
100%
Oxygen Ion
100%
Oxygen Vacancy
100%
Fuel Cell
100%
Percent Reduction
100%
Strontium
100%
Lanthanum
100%
Simple Cubic Crystal System
100%
Bifunctional Catalyst
100%
Hydrogen
100%
Surface Oxygen
100%
Keyphrases
Lanthanum Strontium Cobalt Ferrite
100%
Reversible Solid Oxide Cell (rSOC)
100%
Bifunctional Oxygen Electrode
100%
Ferrite Catalysts
100%
LSCF6428
50%
High Performance
33%
Oxygen Electrode
33%
Highly Active
16%
Bond Valence Sum
16%
Cycling Stability
16%
Oxygen Reduction Reaction
16%
Oxygen Evolution Reaction
16%
Electrolysis
16%
Interconversion
16%
Fuel Cell
16%
Reaction Evolution
16%
Density Functional Calculations
16%
Reduction Temperature
16%
Perovskite Structure
16%
Cubic Perovskite Structure
16%
Simple Cubic
16%
Intermediate Temperature
16%
Distorted Perovskite
16%
Bifunctional Catalyst
16%
Chemical Energy
16%
Efficient Energy Storage
16%
Oxygen Vacancy Formation Energy
16%
Electrical Conductivity Relaxation
16%
Wind Resource
16%
Solar Resource
16%
Oxygen Ion Conduction
16%
Oxygen Surface Exchange
16%
Barrier Energy
16%
Engineering
Oxygen Electrode
100%
Perovskite Structure
50%
Oxygen Evolution Reaction
25%
Promising Candidate
25%
Reduced Temperature
25%
Electrical Conductivity
25%
Cycling Stability
25%
Bond Valence
25%
Intermediate Temperature
25%
Wind Resource
25%
Formation Energy
25%
Chemical Energy
25%
Energy Storage
25%
Fuel Cell
25%
Energy Barrier
25%
Oxygen Reduction Reaction
25%
Oxygen Vacancy
25%
Oxygen Ion
25%
Material Science
Cobalt
100%
Strontium
100%
Lanthanum
100%
Oxide Compound
100%
Density
16%
Oxygen Evolution
16%
Electrical Conductivity
16%
Oxygen Vacancy
16%
Chemical Engineering
Perovskite
100%
Lanthanum
100%