Transition metal (TM) dissolution from cathode active materials is a major factor in accelerating Li-ion battery aging. Residual moisture in the battery is suspected to enhance this degradation mechanism by reacting with the electrolyte, generating acidic species and other decomposition products. In previous studies, we presented a method to track the dissolution in real-time. In the present study, we demonstrate with this method the effect of water on the dissolution of TMs from LiNi0.33Co0.33Mn0.33O2 (NCM111) and LiCoO2 (LCO) used as thin-film model cathodes. We show highly increased dissolution rates in electrolytes with 100 and 1000 ppm of water added and a concomitant decline in electrode performance. More interestingly, we observe a n...
The degree of metal dissolution of cathode materials is a critical parameter in determining the perf...
International audienceAbstract Aqueous solutions are crucial to most domains in biology and chemistr...
Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevate...
Lithium-ion batteries (LIBs) have become reliable electrochemical energy storage systems due to thei...
Transition metal (TM) dissolution from oxide cathode materials is a major challenge limiting the per...
Transition metal (TM) dissolution is a process experienced by most cathode materials based on lithiu...
The longevity of lithium-ion batteries is determined by the rate of chemical and electrochemical sid...
Lithium metal batteries (LMBs) combining a Li metal anode with a transition metal (TM) cathode can a...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
Nickel-rich lithium nickel-manganese-cobalt oxide cathodes, in particular Li(Ni0.8Mn0.1Co0.1)O2 (NMC...
International audienceLithium-ion battery safety can be enhanced by replacing the flammable organic-...
Nickel-rich lithium nickel-manganese-cobalt oxide cathodes, in particular Li(Ni0.8Mn0.1Co0.1)O2 (NMC...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
In this work we investigated the transition metal dissolution of the layered cathode material Li1.04...
Li–air battery has attracted much attention because of its very high theoretical energy density, but...
The degree of metal dissolution of cathode materials is a critical parameter in determining the perf...
International audienceAbstract Aqueous solutions are crucial to most domains in biology and chemistr...
Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevate...
Lithium-ion batteries (LIBs) have become reliable electrochemical energy storage systems due to thei...
Transition metal (TM) dissolution from oxide cathode materials is a major challenge limiting the per...
Transition metal (TM) dissolution is a process experienced by most cathode materials based on lithiu...
The longevity of lithium-ion batteries is determined by the rate of chemical and electrochemical sid...
Lithium metal batteries (LMBs) combining a Li metal anode with a transition metal (TM) cathode can a...
International audienceThe deployment of energy dense positive electrode materials such as Ni-rich NM...
Nickel-rich lithium nickel-manganese-cobalt oxide cathodes, in particular Li(Ni0.8Mn0.1Co0.1)O2 (NMC...
International audienceLithium-ion battery safety can be enhanced by replacing the flammable organic-...
Nickel-rich lithium nickel-manganese-cobalt oxide cathodes, in particular Li(Ni0.8Mn0.1Co0.1)O2 (NMC...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
In this work we investigated the transition metal dissolution of the layered cathode material Li1.04...
Li–air battery has attracted much attention because of its very high theoretical energy density, but...
The degree of metal dissolution of cathode materials is a critical parameter in determining the perf...
International audienceAbstract Aqueous solutions are crucial to most domains in biology and chemistr...
Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevate...