We report the use of X-ray diffraction in combination with computed tomography to provide quantitative information of a coin cell Li-ion battery and a commercial Ni/MH AAA battery for the first time. This technique allows for structural information to be garnered and opens up the possibility of tracking nanostructural changes in operandi. In the case of the cylindrically wound, standard AAA Ni/MH cell, we were able to map all the different phases in the complex geometry, including anode, cathode, current collector and casing, as well as amorphous phases such as the binder and separator. In the case of a Li-ion coin cell battery, we show how the X-ray diffraction tomography data can be used to map crystal texture of the LiCoO2 particles over...
Understanding the performance of commercially relevant cathode materials for lithium-ion (Li-ion) ba...
Increasing electrode thickness is gaining more attention as a potential route to increase energy den...
To improve lithium and sodium ion battery technology we must understand how the properties of the co...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
X-ray computed tomography has emerged as a valuable tool to analyze battery materials. This paper ex...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
Renewable technologies, and in particular the electric vehicle revolution, have generated tremendous...
Summary: The search for higher performance, improved safety, and lifetime of lithium-ion batteries r...
This study presents the application of X-ray diffraction computed tomography for the first time to a...
Synchrotron high-energy X-ray diffraction computed tomography has been employed to investigate, for ...
Understanding the performance of commercially relevant cathode materials for lithium-ion (Li-ion) ba...
Increasing electrode thickness is gaining more attention as a potential route to increase energy den...
To improve lithium and sodium ion battery technology we must understand how the properties of the co...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
We report the use of X-ray diffraction in combination with computed tomography to provide quantitati...
The performances of rechargeable Li-based batteries depend on many factors amongst which is the stru...
X-ray computed tomography has emerged as a valuable tool to analyze battery materials. This paper ex...
Understanding structure/chemistry-function relationships of active battery materials is crucial for ...
Renewable technologies, and in particular the electric vehicle revolution, have generated tremendous...
Summary: The search for higher performance, improved safety, and lifetime of lithium-ion batteries r...
This study presents the application of X-ray diffraction computed tomography for the first time to a...
Synchrotron high-energy X-ray diffraction computed tomography has been employed to investigate, for ...
Understanding the performance of commercially relevant cathode materials for lithium-ion (Li-ion) ba...
Increasing electrode thickness is gaining more attention as a potential route to increase energy den...
To improve lithium and sodium ion battery technology we must understand how the properties of the co...