An innovative combined magnetic resonance imaging and nuclear magnetic resonance methodology, which enables the visualization and spatially resolved quantification of the lithiation/delithiation process in porous Li-ion battery electrodes in real time, is reported. We demonstrate that polarization of the thick graphite electrode correlates with the appearance of energy barriers during the graphite phase transformations and the resulting significant reduction of the lithium chemical diffusion, which must be addressed in any attempt at the fast charging of Li-ion batteries. It is also shown that a portion of the transported Li+ is temporarily stored in the electrode surface film prior to its intercalation into graphite, indicating reversible ...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
International audienceHeterogeneous potential and lithium distribution inside lithium ion batteries ...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
The surface reactions of electrolytes with the graphitic anode of lithium ion batteries have been in...
The surface reactions of electrolytes with the graphitic anode of lithium ion batteries have been in...
The impact of electrode formation is studied by the spatially and time‐resolved distribution of tran...
Lithium ion cells comprising actual components of positive electrodes (LiCoO2, LiNixCoyAlz, and LiMn...
Increasing the charging rate and reducing the charging time for Li-ion batteries are crucial to real...
International audienceLithium-ion batteries are at the core of the democratisation of electric trans...
In order to study the performance, cycling stability and safety of electrochemical storage devices, ...
© 2020 The Royal Society of Chemistry. The principal inhibitor of fast charging lithium ion cells is...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Li-ion batteries are invaluable for portable electronics and vehicle electrification. A better knowl...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
International audienceHeterogeneous potential and lithium distribution inside lithium ion batteries ...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
The surface reactions of electrolytes with the graphitic anode of lithium ion batteries have been in...
The surface reactions of electrolytes with the graphitic anode of lithium ion batteries have been in...
The impact of electrode formation is studied by the spatially and time‐resolved distribution of tran...
Lithium ion cells comprising actual components of positive electrodes (LiCoO2, LiNixCoyAlz, and LiMn...
Increasing the charging rate and reducing the charging time for Li-ion batteries are crucial to real...
International audienceLithium-ion batteries are at the core of the democratisation of electric trans...
In order to study the performance, cycling stability and safety of electrochemical storage devices, ...
© 2020 The Royal Society of Chemistry. The principal inhibitor of fast charging lithium ion cells is...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Li-ion batteries are invaluable for portable electronics and vehicle electrification. A better knowl...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
International audienceHeterogeneous potential and lithium distribution inside lithium ion batteries ...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...