We investigate the role of coherency strains on the thermodynamics of two-phase coexistence during Li (de)intercalation of LixFePO4. We explicitly account for the anisotropy of the elastic moduli and analytically derive coupled chemical and mechanical equilibrium criteria for two-phase morphologies observed experimentally. Coherent two-phase equilibrium leads to a variable voltage profile of individual crystallites within the two-phase region as the dimensions of the crystallite parallel to the interface depend on the phase fractions of the coexisting phases. With a model free energy for LixFePO4, we illustrate the effect of coherency strains on the compositions of the coexisting phases and on the voltage profile. We also show how coherency...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
Lithium iron phosphate (LixFePO4), a cathode material used in rechargeable Li-ion batteries, phase s...
The phase diagram for LixFePO4 has been determined for different lithium concentrations and temperat...
We investigate the role of coherency strains on the thermodynamics of two-phase coexistence during L...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
A theoretical investigation of the effects of elastic coherency strain on the thermodynamics, kineti...
A spectral smoothed boundary phase-field model is implemented to study lithium (Li) intercalation in...
We study the mesoscopic effects which modify phase-segregation in Li<sub><i>x</i></sub>FePO<sub>4</s...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
Samples of nanostructured Li_(x)FePO_4 with characteristic crystal sizes of 26 nm, and compositions ...
The phase diagram for LixFePO4 has been determined for different lithium concentrations and temperat...
The phase diagram for Li_xFePO_4 has been determined for different lithium concentrations and temper...
The crystal chemistry of two initial mixtures of LiFePO4 and heterosite FePO4 (0.5LiFePO4 + 0.5FePO4...
Charge/discharge of lithium-ion battery cathode material LiFePO4 is mediated by the structure and pr...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
Lithium iron phosphate (LixFePO4), a cathode material used in rechargeable Li-ion batteries, phase s...
The phase diagram for LixFePO4 has been determined for different lithium concentrations and temperat...
We investigate the role of coherency strains on the thermodynamics of two-phase coexistence during L...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
A theoretical investigation of the effects of elastic coherency strain on the thermodynamics, kineti...
A spectral smoothed boundary phase-field model is implemented to study lithium (Li) intercalation in...
We study the mesoscopic effects which modify phase-segregation in Li<sub><i>x</i></sub>FePO<sub>4</s...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
Samples of nanostructured Li_(x)FePO_4 with characteristic crystal sizes of 26 nm, and compositions ...
The phase diagram for LixFePO4 has been determined for different lithium concentrations and temperat...
The phase diagram for Li_xFePO_4 has been determined for different lithium concentrations and temper...
The crystal chemistry of two initial mixtures of LiFePO4 and heterosite FePO4 (0.5LiFePO4 + 0.5FePO4...
Charge/discharge of lithium-ion battery cathode material LiFePO4 is mediated by the structure and pr...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
Lithium iron phosphate (LixFePO4), a cathode material used in rechargeable Li-ion batteries, phase s...
The phase diagram for LixFePO4 has been determined for different lithium concentrations and temperat...