Differential Scanning Calorimetry (DSC) and Thermal Gravimetry (TGA) combined with gas analysis are used to identify the main decomposition processes and to develop reaction kinetic models for thermal runaway modelling of Graphite – Lithium Nickel–Manganese–Cobalt-Oxide (NMC 111) cells. Heating rates of 5, 10 and 15 °C min−1 with multiple replications are performed to determine the frequency factor, activation energy and the heat of reaction of the different sub-processes. It is found that both the anode and cathode decompose in multiple parallel and consecutive reactions between 5 °C and 600 °C. A double breakdown mechanism of the protecting Solid Electrolyte Interface (SEI) is suggested to describe the anode decomposition reactions. For t...
International audienceThe risk of thermal runaway is, for Li-ion batteries, a critical issue for lar...
Thinner design of smart phone continuously would need to the high energy density lithium-ion batteri...
Thermal runaway is a phenomenon that occurs due to self-sustaining reactions within batteries at ele...
The two files contain the heat release and peak parameters for anode (Graphite) and cathode (NMC11)
Thermal runaway (TR), a major safety concern for Li-ion batteries (LIBs), involves a complex network...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
Lithium-ion batteries are widely used in many applications due to their formidable performance and c...
Thermal treatment offers an alternative method for the separation of aluminum foil and cathode mater...
The thermal stability of Li-ion cells with intercalating carbon anodes and metal oxide cathodes was ...
The thermal runaway (TR) is one of the most dangerous phenomena related to lithium-ion batteries. Fo...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
A Li-ion cell is composed by a carbon-based negative electrode (NE), a porous polymeric membrane (u...
The high capacity and voltage properties demonstrated by lithium-ion batteries render them as the pr...
Thermal runaway of lithium ion batteries (LIBs) attracts more and more attentions. In this paper, th...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
International audienceThe risk of thermal runaway is, for Li-ion batteries, a critical issue for lar...
Thinner design of smart phone continuously would need to the high energy density lithium-ion batteri...
Thermal runaway is a phenomenon that occurs due to self-sustaining reactions within batteries at ele...
The two files contain the heat release and peak parameters for anode (Graphite) and cathode (NMC11)
Thermal runaway (TR), a major safety concern for Li-ion batteries (LIBs), involves a complex network...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
Lithium-ion batteries are widely used in many applications due to their formidable performance and c...
Thermal treatment offers an alternative method for the separation of aluminum foil and cathode mater...
The thermal stability of Li-ion cells with intercalating carbon anodes and metal oxide cathodes was ...
The thermal runaway (TR) is one of the most dangerous phenomena related to lithium-ion batteries. Fo...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
A Li-ion cell is composed by a carbon-based negative electrode (NE), a porous polymeric membrane (u...
The high capacity and voltage properties demonstrated by lithium-ion batteries render them as the pr...
Thermal runaway of lithium ion batteries (LIBs) attracts more and more attentions. In this paper, th...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
International audienceThe risk of thermal runaway is, for Li-ion batteries, a critical issue for lar...
Thinner design of smart phone continuously would need to the high energy density lithium-ion batteri...
Thermal runaway is a phenomenon that occurs due to self-sustaining reactions within batteries at ele...