Operando powder X-ray diffraction (PXRD) is a widely employed method for the investigation of structural evolution and phase transitions in electrodes for rechargeable batteries. Due to the advantages of high brilliance and high X-ray energies, the experiments are often carried out at synchrotron facilities. It is known that the X-ray exposure can cause beam damage in the battery cell, resulting in hindrance of the electrochemical reaction. This study investigates the extent of X-ray beam damage during operando PXRD synchrotron experiments on battery materials with varying X-ray energies, amount of X-ray exposure and battery cell chemistries. Battery cells were exposed to 15, 25 or 35 keV X-rays (with varying dose) during charge or discharg...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
International audienceThe performances of Li-ion batteries depend on many factors amongst which the ...
Uniformity of the crystal structure of battery electrodes inside a commercial prismatic Li-ion batte...
International audienceWith the advent of high-brilliance synchrotron sources, the issue of beam dama...
With the advent of high brilliance 4th generation synchrotron sources, the issue of beam damage on t...
The main challenges facing rechargeable batteries today are: (1) increasing the electrode capacity; ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
Batteries play a pivotal role in the low-carbon society that is required to thwart the effects of cl...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
International audienceOperando and in situ techniques are becoming mandatory to study Li-ion, post L...
For the development of next-generation batteries it is important to understand the structural change...
The results of an in situ investigation of the structural changes that occur during the operation of...
For the development of next-generation batteries it is important to understand the structural change...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
International audienceThe performances of Li-ion batteries depend on many factors amongst which the ...
Uniformity of the crystal structure of battery electrodes inside a commercial prismatic Li-ion batte...
International audienceWith the advent of high-brilliance synchrotron sources, the issue of beam dama...
With the advent of high brilliance 4th generation synchrotron sources, the issue of beam damage on t...
The main challenges facing rechargeable batteries today are: (1) increasing the electrode capacity; ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
Batteries play a pivotal role in the low-carbon society that is required to thwart the effects of cl...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
International audienceOperando and in situ techniques are becoming mandatory to study Li-ion, post L...
For the development of next-generation batteries it is important to understand the structural change...
The results of an in situ investigation of the structural changes that occur during the operation of...
For the development of next-generation batteries it is important to understand the structural change...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
International audienceThe performances of Li-ion batteries depend on many factors amongst which the ...
Uniformity of the crystal structure of battery electrodes inside a commercial prismatic Li-ion batte...