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Keyphrases
Supercapacitor
100%
Iron Oxide
100%
Nanowires
100%
Structural Stability
100%
High Porosity
100%
Ordered Mesoporous Carbon
100%
Dual Template Synthesis
100%
Carbon Nanowires
60%
Mesostructure
40%
Soft Template
40%
Impregnation
40%
Oxides
40%
Pore Surface
40%
High Pore Volume
40%
Templated Carbon
40%
Metal Oxide Loading
40%
Morphological Structure
20%
Stable Structure
20%
Pore Volume
20%
Specific Capacitance
20%
High-performance Supercapacitors
20%
Promising Strategies
20%
Anodized Aluminum Oxide
20%
Template Approach
20%
Electrode Performance
20%
Small Pore
20%
Mesoporous Structure
20%
Electrochemical Energy Storage
20%
Electrochemical Energy Conversion
20%
Host Material
20%
Cycling Stability
20%
Ionic Mobility
20%
Metal Oxide Electrode
20%
Electrochemical Capacitance
20%
Superior Rate Capability
20%
Hard Template
20%
Heterogeneous Composite
20%
Fe2O3 Nanoparticles
20%
Ordered Mesoporous Silica
20%
Surfactant Micelles
20%
Silica Scaffold
20%
Dual Template
20%
Metal Oxide Composite
20%
Load Capacitance
20%
Ordered Mesoporous Alumina
20%
Hard Template Method
20%
Loading Amount
20%
Triblock Copolymer F127
20%
Material Science
Nanowire
100%
Supercapacitors
100%
Ordered Mesoporous Carbon
100%
Template-Directed Synthesis
100%
Metal Oxide
60%
Pore Volume
60%
Oxide Compound
40%
Aluminum Oxide
40%
Capacitance
40%
Nanoparticle
20%
Surface Active Agent
20%
High Energy Density
20%
Micelle
20%
Copolymer
20%
Ordered Mesoporous Silica
20%