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Self-discharge of rechargeable hybrid aqueous battery
Aishuak Konarov
, Denise Gosselink
, Yongguang Zhang
, Ye Tian
, Diana Askhatova
, P. Chen
Department of Chemical and Materials Engineering
University of Waterloo
Research output
:
Contribution to journal
›
Article
›
peer-review
18
Citations (Scopus)
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INIS
performance
100%
hybrids
100%
electrolytes
100%
cathodes
100%
yields
50%
decomposition
50%
lithium
50%
specific surface area
50%
additives
50%
dissolution
50%
spinels
50%
carbonaceous materials
50%
irreversible processes
50%
Keyphrases
Rechargeable Hybrid Aqueous Battery
100%
Self-discharge
100%
Electrolyte
33%
Lithium
33%
LiMn2O4
33%
Cathode Active Material
33%
Specific Surface Area
33%
Discharge Performance
33%
Conductive Additive
33%
Reversible Process
33%
Carbonaceous Materials
33%
Self-discharge Mechanisms
33%
Spinel Framework
33%
LiMn2O4 Spinel
33%
Irreversible Processes
33%
Acidic Electrolyte
33%
Area Yield
33%
Engineering
Aqueous Battery
100%
Conductive
50%
Specific Surface Area
50%
Active Material
50%
Investigated Material
50%
Carbonaceous Material
50%
Irreversible Process
50%
Material Science
Cathode
100%
Aqueous Battery
100%
Lithium
50%