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High capacity 3D structured tin-based electroplated Li-ion battery anodes
Pengcheng Sun
, Jerome Davis
, Luoxia Cao
, Zhelong Jiang
, John B. Cook
, Hailong Ning
, Jinyun Liu
, Sanghyeon Kim
, Feifei Fan
,
Ralph G. Nuzzo
,
Paul V. Braun
Chemistry
Materials Science and Engineering
Materials Research Laboratory
Mechanical Science and Engineering
Micro and Nanotechnology Laboratory
Chemical and Biomolecular Engineering
Beckman Institute for Advanced Science and Technology
Research output
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Contribution to journal
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Article
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peer-review
Overview
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Keyphrases
3D Structure
100%
High Capacity
100%
Li-ion Battery
100%
Electroplating
100%
Tin-based
100%
Porous Electrode
66%
Sn@C
66%
Areal Capacity
66%
Electroplating Process
33%
Volume Change
33%
Half-cell
33%
Delithiation
33%
Cell Configuration
33%
High Volumetric Capacity
33%
Volumetric Capacity
33%
Good Compatibility
33%
Excellent Rate Performance
33%
Full Cell Configuration
33%
High-areal-capacity
33%
Lithium-ion Battery Anode Material
33%
LCO Cathode
33%
Material Science
Lithium Ion Battery
100%
Anode
100%
Tin
100%
Cathode
33%
Alloying
33%
Anode Material
33%
Electroplating
33%