Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode microstructure to improve overall battery performance, including reduced degradation rates and increased capacity at high discharge rates. However, the mechanisms by which grading might deliver performance benefit, and under what conditions, are not yet fully understood. A Li-ion battery electrochemical model (a modified Doyle-Fuller-Newman type model capable of generating impedance functions) is developed in which local microstructural changes are captured in order to understand why and when graded electrodes can offer performance benefits. Model predictions are evaluated against experimental electrochemical impedance data obtained from electrode...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
Lithium-ion batteries (LIBs) using a LiFePO4 cathode and graphite anode were assembled in coin cell ...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Li-ion battery cathodes based on LiFePO4 are fabricated by a layer-by-layer spray printing method wi...
Homogeneous electrode structures used in Li-ion batteries (LIB) lead to inhomogeneous active materia...
Commercial Li-ion cell electrodes comprise a random mix of the constituent materials largely unchang...
Electrode structures of commercial lithium-ion cells are isotropic at the macro-scale, comprising a ...
Lithium iron phosphate is a promising candidate material for Li-Ion batteries. In this study, the ra...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
International audienceThick Lithium Ion Battery (LIB) electrodes suffer from poor rate capability an...
Cathode materials have been the focal point of research in the quest for high-performance secondary ...
The electrification of the powertrain requires enhanced performance of lithium-ion batteries, mainly...
A mathematical model is developed to simulate the discharge of a LiFePO4 cathode. This model contain...
Lithium iron phosphate is a promising cathode material for the use in lithium-ion batteries meeting ...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
Lithium-ion batteries (LIBs) using a LiFePO4 cathode and graphite anode were assembled in coin cell ...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Li-ion battery cathodes based on LiFePO4 are fabricated by a layer-by-layer spray printing method wi...
Homogeneous electrode structures used in Li-ion batteries (LIB) lead to inhomogeneous active materia...
Commercial Li-ion cell electrodes comprise a random mix of the constituent materials largely unchang...
Electrode structures of commercial lithium-ion cells are isotropic at the macro-scale, comprising a ...
Lithium iron phosphate is a promising candidate material for Li-Ion batteries. In this study, the ra...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
International audienceThick Lithium Ion Battery (LIB) electrodes suffer from poor rate capability an...
Cathode materials have been the focal point of research in the quest for high-performance secondary ...
The electrification of the powertrain requires enhanced performance of lithium-ion batteries, mainly...
A mathematical model is developed to simulate the discharge of a LiFePO4 cathode. This model contain...
Lithium iron phosphate is a promising cathode material for the use in lithium-ion batteries meeting ...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
Lithium-ion batteries (LIBs) using a LiFePO4 cathode and graphite anode were assembled in coin cell ...