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Keyphrases
Li-ion Battery
100%
Charge-discharge
100%
Performance Enhancement
100%
C(T)
100%
Oxide Electrode
100%
High-entropy Spinel Oxide
100%
High-entropy Oxides
100%
Co-free
100%
Tetragonal Spinel
100%
Mn-Fe
33%
Cubic Structure
33%
Oxygen Vacancy
33%
Anode Material
33%
Solvothermal
33%
Mn-Zn
33%
FeNi
33%
Delithiation
33%
Lithiation
33%
Density Functional Calculations
33%
Hydrothermal Method
33%
Rate Capability
33%
Phase Boundary
33%
Phase Stability
33%
Rock-salt Structure
33%
Cycling Stability
33%
Cr-Mn
33%
Fe-Zn
33%
Full Cell
33%
Spinel Phases
33%
Cyclability
33%
Redox Reversibility
33%
Spinel Oxide
33%
Gravimetric Energy Density
33%
Cubic Spinel
33%
Phase Defect
33%
Electroactive Compounds
33%
LiNi0.8Co0.1Mn0.1O2
33%
Redox Kinetics
33%
Oxide Anode
33%
Material Science
Oxide Compound
100%
Lithium Ion Battery
100%
High-entropy Oxides
100%
Anode
66%
Density
33%
Oxygen Vacancy
33%
Anode Material
33%
Hydrothermal Synthesis
33%
Energy Density
33%
High-Entropy Oxides
33%
Phase Interface
33%
Chemistry
Lithium Ion Battery
100%
electrode
100%
High-Entropy Oxides
80%
Oxygen Vacancy
20%
Phase Stability
20%
Phase Interface
20%
Hydrothermal Synthesis
20%
Lithiation
20%
Gravimetric Analysis
20%
Solvothermal Method
20%
stability
20%
Density Functional Theory
20%
Halite
20%
Engineering
Lithium Ion Battery
100%
Secondary Phase
100%
Oxygen Vacancy
25%
Phase Stability
25%
Delithiation
25%
Rate Capability
25%
Phase Boundary
25%
Hydrothermal Synthesis
25%
Cycling Stability
25%
Active Material
25%
Flux Density
25%
Physics
Li-Ion Battery
100%
Spinel
100%
Density Functional Theory
16%
Flux Density
16%
Oxygen Vacancy
16%
Hydrothermal Synthesis
16%