Keyphrases
Orthorhombic
100%
Li-ion
100%
Facile Synthesis
100%
Nb2O5
100%
Ordered Mesoporous
100%
Niobium Oxide
100%
Long Cycling Stability
100%
Nanoparticles
20%
Performance Improvement
20%
High Surface Area
20%
Capacity Retention
20%
High Rate Capability
20%
Electrode Materials
20%
Anode Material
20%
Discharge Capacity
20%
Coulombic Efficiency
20%
Cycling Performance
20%
Rate Capability
20%
Anion Intercalation
20%
Physicochemical Characterization
20%
High Specific Surface Area
20%
Porous Structure
20%
As-synthesized
20%
Highly Effective
20%
Rechargeable Lithium Batteries
20%
Pseudocapacitive
20%
Nanostructure Morphology
20%
Mesoporous Structure
20%
Pore Volume
20%
Charge Storage Mechanism
20%
Characterization Results
20%
Intercalation Behavior
20%
Rate Dependence
20%
Hierarchical Mesoporous
20%
Hierarchical Porous Nanostructure
20%
Electrode Process Kinetics
20%
Agglomerated Particles
20%
Engineering
Rate Capability
100%
Cycling Stability
100%
Nanoparticle
50%
High Surface Area
50%
Scan Rate
50%
Retention Capacity
50%
Charge Storage
50%
Lithium-Ion Batteries
50%
Porous Structure
50%
Specific Surface Area
50%
Porous Nanostructures
50%
Synthesized Material
50%
Physicochemical Characterization
50%
Material Science
Lithium Ion
100%
Niobium Oxide
100%
Nanocrystalline Material
33%
Anode
33%
Anode Material
33%
Lithium Ion Battery
33%
Pore Volume
33%
Nanoparticle
33%
Chemical Engineering
Nanoparticle
100%
Hierarchical Porous
100%
Nanostructure
100%