International audienceWith the advent of high-brilliance synchrotron sources, the issue of beam damage on the samples deserves proper attention. It is especially true for operando studies in batteries, since the intense photon fluxes are commonly used to probe ever finer effects. Here we report on the causes and consequences of synchrotron X-ray beam damage in batteries, based on the case study of operando X-ray diffraction. We show that beam damage is caused by the mingled actions of dose and dose rate. The aftereffects can lie in a broad range, from mild modifications of the crystalline structure to artificial phase transitions, and can thus impede or bias the understanding of the mechanisms at play. We estimate the doses at which the dif...
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...
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...
Operando powder X-ray diffraction (PXRD) is a widely employed method for the investigation of struct...
International audienceOperando and in situ techniques are becoming mandatory to study Li-ion, post L...
The surface sensitivity available to photoelectron spectroscopies (PESs) makes them popular techniqu...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
Rechargeable battery technologies have ignited major breakthroughs in contemporary society, includin...
Synchrotron radiation sources and free electron lasers (FEL) represent practical approaches to produ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
For energy conversion and storage devices, intrinsic properties of materials determine the devices p...
The electrode of Li-ion batteries is required to be chemically and mechanically stable in the electr...
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...
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...
Operando powder X-ray diffraction (PXRD) is a widely employed method for the investigation of struct...
International audienceOperando and in situ techniques are becoming mandatory to study Li-ion, post L...
The surface sensitivity available to photoelectron spectroscopies (PESs) makes them popular techniqu...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
Rechargeable battery technologies have ignited major breakthroughs in contemporary society, includin...
Synchrotron radiation sources and free electron lasers (FEL) represent practical approaches to produ...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
Lithium-ion batteries are nowadays widely used in consumer electronics and electric vehicles. Howev...
For energy conversion and storage devices, intrinsic properties of materials determine the devices p...
The electrode of Li-ion batteries is required to be chemically and mechanically stable in the electr...
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...