An in situ cell designed for synchrotron X-ray diffraction during electrochemical cycling of battery materials is presented. The cell operates in transmission mode and can be oscillated with the dedicated sample holder to improve powder statistics. It allows fast data acquisition, provides hermetic sealing and high-quality diffraction data, and is easy to assemble, since a commercially available Swagelok junction is used as the cell body. Diffraction data from the cycling of a battery using LixNi0.8Co0.2O2 (0 [less-than or equal to] x [less-than or equal to] 1) as the cathode material are presented
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
An electrochemical cell has been developed for in situ x-ray diffraction from a working electrode un...
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...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
A simple in-situ cell design is formulated based on the various in-situ electrochemical cells develo...
International audienceThe ever-growing field of energy storage needs the development of fast cycling...
The results of an in situ investigation of the structural changes that occur during the operation of...
A brief review of in situ powder diffraction methods for battery materials is given. Furthermore, it...
International audienceA new electrochemical cell has been specially designed for operando experiment...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
Batteries play a pivotal role in the low-carbon society that is required to thwart the effects of cl...
In order to solve issues such as sustainable energy sources, there is an urgent need for the develop...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
An electrochemical cell has been developed for in situ x-ray diffraction from a working electrode un...
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...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
A simple in-situ cell design is formulated based on the various in-situ electrochemical cells develo...
International audienceThe ever-growing field of energy storage needs the development of fast cycling...
The results of an in situ investigation of the structural changes that occur during the operation of...
A brief review of in situ powder diffraction methods for battery materials is given. Furthermore, it...
International audienceA new electrochemical cell has been specially designed for operando experiment...
Operation of a battery typically involves dynamic and non-equilibrium processes, making real time op...
Batteries play a pivotal role in the low-carbon society that is required to thwart the effects of cl...
In order to solve issues such as sustainable energy sources, there is an urgent need for the develop...
Understanding the electrochemical reaction mechanisms and kinetics in batteries is the key challenge...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
An electrochemical cell has been developed for in situ x-ray diffraction from a working electrode un...