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On the thermal behavior of lithium intercalated graphites
Ortal Haik
, Svetlana Ganin
, Gregory Gershinsky
, Ella Zinigrad
, Boris Markovsky
,
Doron Aurbach
, I. Halalay
Department of Chemistry
Bar-Ilan University
General Motors
Research output
:
Contribution to journal
›
Article
›
peer-review
59
Scopus citations
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Keyphrases
Thermal Behavior
100%
Surface Film
100%
Lithium Intercalated Graphite
100%
Electrolyte Solution
66%
Lithiated Graphite
66%
Graphite Particles
66%
High Temperature
33%
Structural Change
33%
Behavior Change
33%
Li-ion
33%
Reduction Products
33%
LiPF6
33%
Graphite
33%
Ethylene Carbonate
33%
Graphite Electrode
33%
Graphitic Materials
33%
Dimethyl Carbonate
33%
Thermal Reaction
33%
Solvent Molecules
33%
Gaseous Products
33%
Endothermic Process
33%
Cathodic Polarization
33%
Protective Surface Film
33%
Ethyl Methyl Carbonate
33%
Graphite Intercalation
33%
Internal Pressure
33%
Graphite Lithiation
33%
DSC Experiments
33%
Protective Film
33%
Thermal-structural
33%
Chemistry
Liquid Film
100%
Lithium
100%
Protective
40%
Electrolyte
40%
Lithium Ion
20%
Ethylene
20%
Lithiation
20%
Cathodic Polarization
20%
Negative Reaction Reactivity
20%
Structure
20%
Differential Scanning Calorimetry
20%
Dimethyl Carbonate
20%
Internal Pressure
20%
Engineering
Surface Film
100%
Thermal Behavior
100%
Ethylene Carbonate
25%
Graphite Electrode
25%
Solvent Molecule
25%
Endothermic Process
25%
Internal Pressure
25%
Material Science
Film
100%
Lithium
100%
Lithium Ion
25%
Differential Scanning Calorimetry
25%
Protective Coating
25%
Chemical Engineering
Ethylene
100%