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Deterministic Design of Chemistry and Mesostructure in Li-Ion Battery Electrodes
Paul V. Braun
, John B. Cook
Materials Science and Engineering
Materials Research Laboratory
Mechanical Science and Engineering
Micro and Nanotechnology Laboratory
Chemical and Biomolecular Engineering
Chemistry
Beckman Institute for Advanced Science and Technology
Research output
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Contribution to journal
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Review article
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peer-review
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Keyphrases
Battery-type Electrode
100%
Mesostructure
100%
Deterministic Design
100%
Li-ion Battery
100%
Random Packing
66%
Chemical Interaction
33%
Control Structure
33%
Active Materials
33%
Free Volume
33%
Design Approach
33%
Chemical Linkage
33%
Electrode Design
33%
Lithiation Process
33%
High Energy Density Materials
33%
Conductive Network
33%
Ionic Pathway
33%
Delithiation Mechanism
33%
Three-dimensional Architecture
33%
Electronic Pathway
33%
Engineering
Lithium Ion Battery
100%
Deterministic Design
100%
Conductive
50%
Active Material
50%
Free Volume
50%
Delithiation
50%
Flux Density
50%
Flat Surface
50%
Chemistry
Chemistry
100%
Lithium Ion Battery
100%
electrode
100%
Lithiation
20%
Free Volume
20%
Electrode Design
20%
electronics
20%
Material Science
Lithium Ion Battery
100%
Free Volume
100%
High Energy Density
100%