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Selenium-impregnated hollow carbon microspheres as efficient cathode materials for lithium-selenium batteries
Young Jun Hong,
Yun Chan Kang
Research output
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Contribution to journal
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Article
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peer-review
60
Citations (Scopus)
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Dive into the research topics of 'Selenium-impregnated hollow carbon microspheres as efficient cathode materials for lithium-selenium batteries'. Together they form a unique fingerprint.
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Keyphrases
Cathode Material
100%
Selenium
100%
Hollow Carbon Microspheres
100%
Lithium-selenium Batteries
100%
Capacity Retention
50%
Composite Microspheres
50%
Thermogravimetric Analysis
25%
SnO2
25%
Core-shell Structure
25%
Structural Stability
25%
Storage Performance
25%
Shell Thickness
25%
Discharge Capacity
25%
Spray Pyrolysis
25%
Leaching
25%
Li-ion
25%
Carbon C
25%
Li-ion Battery
25%
Mesopore
25%
Se Content
25%
Li Insertion
25%
Constant Current Density
25%
Empty Core
25%
Desertion
25%
Hollow Carbon
25%
C@SnO2
25%
Material Science
Lithium
100%
Cathode Material
100%
Microsphere
100%
Density
10%
Thermogravimetric Analysis
10%
Spray Pyrolysis
10%
Lithium Ion
10%
Chemical Engineering
Pyrolysis
100%
Mesopore
100%
Carbon
100%