In this work the heat generation in porous LiCoO2 based electrodes for lithium ion batteries is studied in detail. Irreversible heat generation rates due to ohmic resistance, charge transfer and mass transport limitations as well as the reversible heat of the electrode reaction were determined from electrochemical measurements as a function of the C-rate, the temperature and the lithium concentration in the active material. The results show that all the individual heat sources contribute significantly to the total heat generation in the electrode. The heat sources are functions of the C-rate and the temperature as well as the lithium concentration in the active material. The reversible heat contribution was found to be most significant at h...
The specific thermal capacity and heat dissipation rate for lithium ion cells containing LiNiO2 and ...
Thermal behavior of LixCoO2 cathode material from cells charged to different voltages has been analy...
In this paper we report the thermal conductivity of several commercial and non-commercial Li-ion sec...
Heat effects are known to be crucial for the performance of the Li-battery. In addition to the irrev...
The aim of this thesis was to investigate the thermoelectric properties and local reversible heat ef...
A three dimensional numerical framework with finite volume method was employed to simulate heat gene...
There are technical barriers for penetration market requesting rechargeable lithium-ion battery pack...
In this work an experimental setup for in-operando temperature measurements across the interfaces an...
The effect of different thermal conditions on battery performance has been evaluated by computer sim...
The local heat generation in a single stack lithium ion battery cell was investigated as a function ...
A precise interpretation of lithium-ion battery (LIB) heat generation is indispensable to the advanc...
Heat generation is a major safety concern in the design and development of Li ion batteries (LIBs) f...
A three dimensional thermal abuse model for graphite/LiPF6/LiCoO2 batteries is established particula...
International audienceThis work presents experimental analysis on the local heat flux distribution f...
Lithium-ion batteries are prone to severe, mechanically-induced short circuit events that can lead t...
The specific thermal capacity and heat dissipation rate for lithium ion cells containing LiNiO2 and ...
Thermal behavior of LixCoO2 cathode material from cells charged to different voltages has been analy...
In this paper we report the thermal conductivity of several commercial and non-commercial Li-ion sec...
Heat effects are known to be crucial for the performance of the Li-battery. In addition to the irrev...
The aim of this thesis was to investigate the thermoelectric properties and local reversible heat ef...
A three dimensional numerical framework with finite volume method was employed to simulate heat gene...
There are technical barriers for penetration market requesting rechargeable lithium-ion battery pack...
In this work an experimental setup for in-operando temperature measurements across the interfaces an...
The effect of different thermal conditions on battery performance has been evaluated by computer sim...
The local heat generation in a single stack lithium ion battery cell was investigated as a function ...
A precise interpretation of lithium-ion battery (LIB) heat generation is indispensable to the advanc...
Heat generation is a major safety concern in the design and development of Li ion batteries (LIBs) f...
A three dimensional thermal abuse model for graphite/LiPF6/LiCoO2 batteries is established particula...
International audienceThis work presents experimental analysis on the local heat flux distribution f...
Lithium-ion batteries are prone to severe, mechanically-induced short circuit events that can lead t...
The specific thermal capacity and heat dissipation rate for lithium ion cells containing LiNiO2 and ...
Thermal behavior of LixCoO2 cathode material from cells charged to different voltages has been analy...
In this paper we report the thermal conductivity of several commercial and non-commercial Li-ion sec...