An improved model to analyze the partial molar entropy step between stage II and stage I for lithium intercalation in graphite, based in statistical mechanics, is presented. At difference with our previous formulation, which assumed a priori heterogeneities, the present model considers the more realistic case of induced heterogeneities. The present work shows that, similarly to considerations made in the literature with intercalation cathode materials, most of the partial molar entropy changes for Li insertion into graphite may be explained on a configurational basis. The interaction between ions intercalated in a same layer of graphite can be inferred to be strongly attractive, as was assumed in the literature for the simulation of voltamm...
To improve the performances of Li-Ion batteries, technological breakthroughs are required. This impo...
The present work performs a first-principles study of the lithiation of graphite oxides with low oxy...
Here, we report on a novel study for battery application regarding the impact of interactions in cha...
In order to examine the controversial hypothesis put forward to explain the entropy step experimenta...
Intercalation compounds play a fundamental role to increase the capabilities of electrochemical cell...
A computational model is proposed to study lithium-graphite intercalation compounds in the framework...
L’électrode négative des batteries lithium-ion est communément en graphite. Bien qu’ayant une capaci...
Kinetic Monte Carlo simulations are applied to simulate the insertion of lithium ions into graphite....
Herein, a Monte Carlo study within the canonical assembly has been applied to elucidate the lithium-...
International audienceOne of the interests in studying the intercalation phenomenon of Li-ion is to ...
Negative electrodes of lithium-ion batteries are mainly based on graphite, because of their good ele...
The entropy change in Li/C halfcells was measured by electrochemical microcalorimetry. For Li bulk d...
Understanding the role of the phase transitions during lithiation and delithiation of graphite remai...
The effect of milling time on the morphology of graphite is characterized by XRD, SEM, BET, FTIR and...
The effect of milling time on the morphology of graphite is characterized by XRD, SEM, BET, FTIR and...
To improve the performances of Li-Ion batteries, technological breakthroughs are required. This impo...
The present work performs a first-principles study of the lithiation of graphite oxides with low oxy...
Here, we report on a novel study for battery application regarding the impact of interactions in cha...
In order to examine the controversial hypothesis put forward to explain the entropy step experimenta...
Intercalation compounds play a fundamental role to increase the capabilities of electrochemical cell...
A computational model is proposed to study lithium-graphite intercalation compounds in the framework...
L’électrode négative des batteries lithium-ion est communément en graphite. Bien qu’ayant une capaci...
Kinetic Monte Carlo simulations are applied to simulate the insertion of lithium ions into graphite....
Herein, a Monte Carlo study within the canonical assembly has been applied to elucidate the lithium-...
International audienceOne of the interests in studying the intercalation phenomenon of Li-ion is to ...
Negative electrodes of lithium-ion batteries are mainly based on graphite, because of their good ele...
The entropy change in Li/C halfcells was measured by electrochemical microcalorimetry. For Li bulk d...
Understanding the role of the phase transitions during lithiation and delithiation of graphite remai...
The effect of milling time on the morphology of graphite is characterized by XRD, SEM, BET, FTIR and...
The effect of milling time on the morphology of graphite is characterized by XRD, SEM, BET, FTIR and...
To improve the performances of Li-Ion batteries, technological breakthroughs are required. This impo...
The present work performs a first-principles study of the lithiation of graphite oxides with low oxy...
Here, we report on a novel study for battery application regarding the impact of interactions in cha...