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High energy supercapattery with an ionic liquid solution of LiClO4
Linpo Yu, George Z. Chen
Faculty of Science and Engineering
Research output
:
Journal Publication
›
Article
›
peer-review
61
Citations (Scopus)
74
Downloads (Pure)
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Keyphrases
AC Impedance
16%
Activated Carbon
100%
Active Materials
16%
Aqueous Solution
16%
Battery-like
16%
Butyl
16%
Capacitors
16%
Charge-discharge
16%
Current Density
16%
Electric Double Layer Capacitor
16%
Electrochemical Deposition
16%
Electrochemical Dissolution
16%
Electrolyte
16%
Galvanostatic
16%
Glass Carbon Electrode
16%
High Energy
100%
Ionic Liquid Electrolyte
33%
Ionic Liquid Solution
100%
Lithium
16%
Lithium Metal
33%
Lithium Perchlorate
100%
Lithium-ion Battery
16%
Micropore
16%
Negative Electrode
33%
Non-uniform Particles
16%
Pentafluoroethyl
16%
Platinum on Carbon
16%
Porous Structure
16%
Positive Electrode
16%
Positive Electrode Material
16%
Specific Capacitance
16%
Specific Energy
16%
Supercapattery
100%
Uniform Particle Size
16%
γ-butyrolactone
16%
Material Science
Battery (Electrochemical Energy Engineering)
14%
Capacitance
14%
Capacitor
14%
Density
14%
Electrodeposition
14%
Ionic Liquid
100%
Lithium
42%
Lithium Battery
14%
Platinum
14%
Scanning Electron Microscopy
14%
Solution
14%
Supercapacitors
14%
Chemical Engineering
Activated Carbon
100%