International audienceA new electrochemical cell has been specially designed for operando experiments at synchrotron facilities both for X-ray diffraction and X-ray absorption. It allows the investigation of insertion materials under high current densities (up to 5C rate) and hence to study complex phenomena of structural and electronic changes out of equilibrium. The LiFePO4-FePO4 system has been chosen as a case study to validate this cell, and tricky phenomena, with apparent delays in phase formation compared with the number of electrons exchanged, have been spotted
An electrochemical in-situ cell for diffraction studies of battery materials has been developed. The...
The results of an in situ investigation of the structural changes that occur during the operation of...
Lithium ion batteries (LIBs) are already widely used in a variety of different applications in daily...
International audienceA new electrochemical cell has been specially designed for operando experiment...
A simple in-situ cell design is formulated based on the various in-situ electrochemical cells develo...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
An in situ cell designed for synchrotron X-ray diffraction during electrochemical cycling of battery...
International audienceTo improve the performance of the positive electrode in batteries, it is impor...
Probing the structural changes that electrode materials undergo during electrochemical cycling while...
International audienceProbing the structural changes that electrode materials undergo during electro...
International audienceThe performances of Li-ion batteries depend on many factors amongst which the ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
An electrochemical in-situ cell for diffraction studies of battery materials has been developed. The...
The results of an in situ investigation of the structural changes that occur during the operation of...
Lithium ion batteries (LIBs) are already widely used in a variety of different applications in daily...
International audienceA new electrochemical cell has been specially designed for operando experiment...
A simple in-situ cell design is formulated based on the various in-situ electrochemical cells develo...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
An in situ cell designed for synchrotron X-ray diffraction during electrochemical cycling of battery...
International audienceTo improve the performance of the positive electrode in batteries, it is impor...
Probing the structural changes that electrode materials undergo during electrochemical cycling while...
International audienceProbing the structural changes that electrode materials undergo during electro...
International audienceThe performances of Li-ion batteries depend on many factors amongst which the ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
An electrochemical in-situ cell for diffraction studies of battery materials has been developed. The...
The results of an in situ investigation of the structural changes that occur during the operation of...
Lithium ion batteries (LIBs) are already widely used in a variety of different applications in daily...