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Interface Stability in Solid-State Batteries
William D. Richards
, Lincoln J. Miara
, Yan Wang
,
Jae Chul Kim
, Gerbrand Ceder
Department of Chemical Engineering and Materials Science
Massachusetts Institute of Technology
University of California at Berkeley
Lawrence Berkeley National Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
1436
Scopus citations
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Chemistry
Battery (Electrochemical Energy Engineering)
100%
Cathode
33%
Chemical Reaction Product
33%
Decomposition
33%
Electrode Material
33%
Electrolyte
100%
Lithium Ion Battery
33%
Number
66%
Reaction Mechanism
33%
Reactivity
33%
Resistance
66%
Solid
100%
Solid Electrolyte
33%
Thermodynamics
33%
Voltage
33%
Engineering
Barrier Layer
33%
Coating
33%
Development
33%
Evaluation
33%
High Conductivity
33%
High Voltage
33%
Interfacial Resistance
33%
Limiting Factor
33%
Lithium-Ion Batteries
33%
Mechanisms
33%
Newer Material
33%
Performance
33%
Phase Formation
33%
Products
33%
Reactivity
33%
Resistive
33%
Stability
100%
Thermodynamics
33%
Windows
33%
Physics
Battery
25%
Cathode
25%
Coating
25%
Electric Battery
100%
Electric Potential
25%
Electrodes
50%
Electrolyte
100%
Evaluation
25%
Performance
25%
Shapes
25%
Solid State
100%
Stability
50%
Surface Properties
25%
Thermodynamics
25%
Material Science
Cathode
33%
Coating
33%
Conductivity
33%
Electrode
66%
Electrolyte
100%
Material
66%
Solid State Battery
100%