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Ultrahigh pseudocapacitance of mesoporous Ni-doped Co(OH)
2
/ITO nanowires
Duc Tai Dam,
Jong Min Lee
*
*
Corresponding author for this work
Nanyang Technological University
Research output
:
Contribution to journal
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Article
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peer-review
39
Citations (Scopus)
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2
/ITO nanowires'. Together they form a unique fingerprint.
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Keyphrases
Ultra-high
100%
Pseudocapacitance
100%
Mesoporous
100%
Co(OH)2
100%
Ni Doping
100%
ITO Nanowires
100%
Mesoporous Nanosheets
100%
At Discharge
50%
As-synthesized
50%
Nanowires
50%
Diameter Ranges
50%
Nonionic Surfactant
50%
Titanium Substrate
50%
Ultrathin Nanosheets
50%
Chemical Vapor Deposition
50%
KOH Solution
50%
Low Capacitance
50%
Discharge Current Density
50%
Pseudocapacitive Behavior
50%
Mesoporous Nanowires
50%
Potentiostatic Electrodeposition
50%
High Specific Capacitance
50%
Directly Grown
50%
Rate Performance
50%
Liquid Crystalline
50%
Indium-tin-oxide Nanowire
50%
Nanowire Electrodes
50%
Capacitance Fading
50%
Material Science
Nanowire
100%
Indium Tin Oxide
100%
Nanosheet
75%
Capacitance
50%
Density
25%
Electrodeposition
25%
Film
25%
Chemical Vapor Deposition
25%
Nonionic Surfactant
25%
Titanium
25%
Liquid Crystal
25%
Chemical Engineering
Nanowire
100%
Nanosheet
75%
Electrodeposition
25%
Surfactant
25%
Film
25%
Vapor Deposition
25%
Chemical Vapor Deposition
25%
Tin Oxide
25%
Indium
25%