International audienceThick Lithium Ion Battery (LIB) electrodes suffer from poor rate capability and high ionic impedance due to their thickness and mesostructure. Therefore, optimizing thick electrode architectures becomes crucial. In this work, we report a systematic assessment of the ionic resistance in heterogeneous porous electrodes through the combination of computational simulations using a 4D-resolved model and experimental measurements. The first part of the study is devoted to a general assessment of Electrochemical Impedance Spectroscopy (EIS) spectra, mapping the impact of ionic and electronic resistances on the overall impedances of uncalendered and calendered LiNi1/3Mn1/3Co1/3O2, LiFePO4 and graphite electrodes. In the second...
Electrode structures of commercial lithium-ion cells are isotropic at the macro-scale, comprising a ...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The prospect of thick graded electrodes for both higher energy and higher-power densities in lithium...
International audienceThick Lithium Ion Battery (LIB) electrodes suffer from poor rate capability an...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
The production of Li-Ion battery electrodes is a highly interconnected process and many parameters ...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
To understand the relationship between the specific energy and power of lithium (Li)-ion batteries, ...
Internal resistance of lithium-ion batteries is a key factor for device power capability. The actual...
Internal resistance at porous electrodes for Li-ion batteries is a key factor for device power capab...
International audienceThe influence of the negative electrode design on its electrochemical performa...
The targeted optimization of Li-ion batteries (LIBs) requires a fundamental understanding of the wid...
Electrochemical Impedance Spectroscopy (EIS) is a powerful technique for characterizing electrochemi...
The conductive additive and binder domain (CBD) is an essential component of Lithium-ion battery ele...
Electrode structures of commercial lithium-ion cells are isotropic at the macro-scale, comprising a ...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The prospect of thick graded electrodes for both higher energy and higher-power densities in lithium...
International audienceThick Lithium Ion Battery (LIB) electrodes suffer from poor rate capability an...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
The production of Li-Ion battery electrodes is a highly interconnected process and many parameters ...
Graded electrodes for Li-ion batteries aim to exploit controlled variations in local electrode micro...
Li-Ion batteries are commonly used in portable electronic devices and state-of-the-art electric vehi...
To understand the relationship between the specific energy and power of lithium (Li)-ion batteries, ...
Internal resistance of lithium-ion batteries is a key factor for device power capability. The actual...
Internal resistance at porous electrodes for Li-ion batteries is a key factor for device power capab...
International audienceThe influence of the negative electrode design on its electrochemical performa...
The targeted optimization of Li-ion batteries (LIBs) requires a fundamental understanding of the wid...
Electrochemical Impedance Spectroscopy (EIS) is a powerful technique for characterizing electrochemi...
The conductive additive and binder domain (CBD) is an essential component of Lithium-ion battery ele...
Electrode structures of commercial lithium-ion cells are isotropic at the macro-scale, comprising a ...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
The prospect of thick graded electrodes for both higher energy and higher-power densities in lithium...