A mathematical model is developed to simulate the discharge of a LiFePO4 cathode. This model contains 3 size scales, which match with experimental observations present in the literature on the multi-scale nature of LiFePO4 material. A shrinking-core is used on the smallest scale to represent the phase-transition of LiFePO4 during discharge. The model is then validated against existing experimental data and this validated model is then used to investigate parameters that influence active material utilisation. Specifically the size and composition of agglomerates of LiFePO4 crystals is discussed, and we investigate and quantify the relative effects that the ionic and electronic conductivities within the oxide have on oxide utilisation. We fin...
The electrification of the powertrain requires enhanced performance of lithium-ion batteries, mainly...
Lithium iron phosphate is a promising candidate material for Li-Ion batteries. In this study, the ra...
International audienceThe previously presented mesoscopic model [Phys. Chem. Chem. Phys., 16, 22555,...
LiFePO4 is a commercially available battery material with good theoretical discharge capacity, excel...
This work encompasses modeling and experimental work to improve understanding of transport and other...
We construct a two-scale mathematical model for modern, high-rate LiFePO4cathodes. We attempt to val...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
Conductive carbon additives with different surface area and particle size, alone or in different com...
This paper focuses on the LiFePO4 (LFP) battery, a classical and one of the safest Li-ion battery te...
AbstractCathode materials in nano size improve the performance of batteries due to the increased rea...
Multiscale numerical simulations based on the porous-electrode theory developed by Newman et al. hav...
Solid state and interfacial processes are not necessarily the principal rate limiting process during...
In this thesis the modeling and simulation of a LiFePO4-based lithium-ion battery was presented. For...
We present a detailed electrochemical model of a LiFePO4 battery based on a multi-scale continuum d...
The electrification of the powertrain requires enhanced performance of lithium-ion batteries, mainly...
Lithium iron phosphate is a promising candidate material for Li-Ion batteries. In this study, the ra...
International audienceThe previously presented mesoscopic model [Phys. Chem. Chem. Phys., 16, 22555,...
LiFePO4 is a commercially available battery material with good theoretical discharge capacity, excel...
This work encompasses modeling and experimental work to improve understanding of transport and other...
We construct a two-scale mathematical model for modern, high-rate LiFePO4cathodes. We attempt to val...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
Conductive carbon additives with different surface area and particle size, alone or in different com...
This paper focuses on the LiFePO4 (LFP) battery, a classical and one of the safest Li-ion battery te...
AbstractCathode materials in nano size improve the performance of batteries due to the increased rea...
Multiscale numerical simulations based on the porous-electrode theory developed by Newman et al. hav...
Solid state and interfacial processes are not necessarily the principal rate limiting process during...
In this thesis the modeling and simulation of a LiFePO4-based lithium-ion battery was presented. For...
We present a detailed electrochemical model of a LiFePO4 battery based on a multi-scale continuum d...
The electrification of the powertrain requires enhanced performance of lithium-ion batteries, mainly...
Lithium iron phosphate is a promising candidate material for Li-Ion batteries. In this study, the ra...
International audienceThe previously presented mesoscopic model [Phys. Chem. Chem. Phys., 16, 22555,...