A simple in-situ cell design is formulated based on the various in-situ electrochemical cells developed over the last three decades. The cell is targeted at those researchers who are not necessarily in the field of lithium ion battery research but are interested in synthesising and performing fundamental structural analyses of compounds that cannot be made via any other route. Therefore, this design uses only components that are routinely available and can be machined in-house. The effectiveness of the initial cell design is demonstrated through kinetic analysis of the lithium insertion reaction for the Li0.18Sr0.66Ti0.5Nb0.5O3 defect perovskite using data obtained from hundreds of diffraction patterns. Within the first discharge it has bee...
The work presented in this PhD thesis explores the lithium mobility and lithium insertion behaviour ...
International audienceIn order to improve the electrochemical performances of lithium–sulfur batteri...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
An electrochemical in-situ cell for diffraction studies of battery materials has been developed. The...
An in situ cell designed for synchrotron X-ray diffraction during electrochemical cycling of battery...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
Designing materials for application as electrodes in sodium-ion batteries may require the use of unc...
International audienceA new electrochemical cell has been specially designed for operando experiment...
Lithium ion batteries (LIBs) are already widely used in a variety of different applications in daily...
International audienceA detailed study of the topotactic reaction of lithium insertion was undergone...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
The work presented in this PhD thesis explores the lithium mobility and lithium insertion behaviour ...
International audienceIn order to improve the electrochemical performances of lithium–sulfur batteri...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
An electrochemical in-situ cell for diffraction studies of battery materials has been developed. The...
An in situ cell designed for synchrotron X-ray diffraction during electrochemical cycling of battery...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
Designing materials for application as electrodes in sodium-ion batteries may require the use of unc...
International audienceA new electrochemical cell has been specially designed for operando experiment...
Lithium ion batteries (LIBs) are already widely used in a variety of different applications in daily...
International audienceA detailed study of the topotactic reaction of lithium insertion was undergone...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
The work presented in this PhD thesis explores the lithium mobility and lithium insertion behaviour ...
International audienceIn order to improve the electrochemical performances of lithium–sulfur batteri...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...