Li-ion batteries had a great development in recent years, and their use has grown massively because of their higher energy and power density with respect to traditional ones. However, their high energy density implies great danger in the event of malfunctions or failures, due to the emission of toxic and highly flammable substances. In the worst case, thermal runaway can occur. It is a chain reaction where unwanted reactions take place that leads to an uncontrolled and unstoppable increase in temperature. It can cause uncontrolled combustion and then explosion with great danger. In order to identify the conditions that lead to the thermal runaway and to limit its occurrence, thermal stability of Li-ion batteries is here investigated. Therma...
In this study, 19 experiments were conducted with 25 pouch cells of NMC cathode to investigate therm...
This study addresses the effects of the SOC (State of Charge) and the charging–discharging process o...
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...
The main features of Lithium-ion (Li-ion) batteries are high energy and power density, which make th...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
Lithium-ion batteries offer great energy and power densities but the thermal stability is an issue o...
In energy storage systems and electric vehicles utilizing lithium-ion batteries, an internal short c...
Thermal runaway (TR) and the thermal runaway propagation (TRP) of Li-ion batteries can lead to safet...
Lithium-ion batteries are widely used in many applications due to their formidable performance and c...
International audienceIt is now well established that lithium-ion battery technology is a key electr...
International audienceThe main safety issue pertaining to operating lithium-ion batteries (LIBs) rel...
Rechargeable batteries are a key component for sustainable mobility. The last years showed a signifi...
The lithium-ion battery industry has been developing rapidly, with energy density and capacity const...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
The thermal stability of Li-ion cells with intercalating carbon anodes and metal oxide cathodes was ...
In this study, 19 experiments were conducted with 25 pouch cells of NMC cathode to investigate therm...
This study addresses the effects of the SOC (State of Charge) and the charging–discharging process o...
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...
The main features of Lithium-ion (Li-ion) batteries are high energy and power density, which make th...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
Lithium-ion batteries offer great energy and power densities but the thermal stability is an issue o...
In energy storage systems and electric vehicles utilizing lithium-ion batteries, an internal short c...
Thermal runaway (TR) and the thermal runaway propagation (TRP) of Li-ion batteries can lead to safet...
Lithium-ion batteries are widely used in many applications due to their formidable performance and c...
International audienceIt is now well established that lithium-ion battery technology is a key electr...
International audienceThe main safety issue pertaining to operating lithium-ion batteries (LIBs) rel...
Rechargeable batteries are a key component for sustainable mobility. The last years showed a signifi...
The lithium-ion battery industry has been developing rapidly, with energy density and capacity const...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
The thermal stability of Li-ion cells with intercalating carbon anodes and metal oxide cathodes was ...
In this study, 19 experiments were conducted with 25 pouch cells of NMC cathode to investigate therm...
This study addresses the effects of the SOC (State of Charge) and the charging–discharging process o...
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...