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Asymmetric Membranes for High Capacity Lithium-Ion Battery Electrodes
Ji Wu
, Jianlin Li
Biochemistry, Chemistry & Physics
Oak Ridge National Laboratory
Research output
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Contribution to conference
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Dive into the research topics of 'Asymmetric Membranes for High Capacity Lithium-Ion Battery Electrodes'. Together they form a unique fingerprint.
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Material Science
Lithium Ion Battery
100%
Anode
83%
Density
33%
Alloying
33%
Nanoparticle
16%
Vanadium
16%
Oxide Compound
16%
Leaching
16%
Sol-Gel
16%
Lithium
16%
Germanium
16%
Tin Dioxide
16%
Osmosis Membrane
16%
Solid Electrolyte
16%
Silicon
16%
Chemical Engineering
Reverse Osmosis
100%
Tin Dioxide
100%
Nanoparticle
100%
Membrane Technology
100%
Engineering
Lithium-Ion Batteries
100%
Asymmetric Membrane
100%
Retention Capacity
28%
Phase-Inversion
28%
Alloying
28%
Energy Storage
14%
Electric Vehicle
14%
Inversion Method
14%
Solid Electrolyte Interphase
14%
Si Nanoparticles
14%
Reverse Osmosis Membrane
14%
Membrane Technology
14%