To monitor dynamic volume changes of electrode materials during electrochemical lithium storage and removal process is of utmost importance for developing high performance lithium storage materials. We herein report an in operando probing of mesoscopic structural changes in ordered mesoporous electrode materials during cycling with synchrotron-based small angel X-ray scattering (SAXS) technique. In operando SAXS studies combined with electrochemical and other physical characterizations straightforwardly show how porous electrode materials underwent volume changes during the whole process of charge and discharge, with respect to their own reaction mechanism with lithium. This comprehensive information on the pore dynamics as well as volume c...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The key to advancing lithium-ion battery technology-in particular, fast charging-is the ability to f...
A complete chemical and morphological analysis of the evolution of battery electrode materials can b...
To monitor dynamic volume changes of electrode materials during electrochemical lithium storage and ...
In this study, we prepared single-walled carbon nanotube electrodes for lithium–air batteries (LABs)...
For the development of next-generation batteries it is important to understand the structural change...
For the development of next-generation batteries it is important to understand the structural change...
Increasing the energy and power density simultaneously remains a major challenge for improving elect...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
We present an operando study of a lithium ion battery combining scanning X-ray diffraction (SXRD) an...
In this thesis, two electrode materials for a new generation of post lithium ion batteries were inv...
The main challenges facing rechargeable batteries today are: (1) increasing the electrode capacity; ...
<p>For the development of next-generation batteries it is important to understand the structural cha...
In ANL laboratories, disordered carbons with predictable surface area and porosity properties have b...
International audienceIn order to improve the electrochemical performances of lithium–sulfur batteri...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The key to advancing lithium-ion battery technology-in particular, fast charging-is the ability to f...
A complete chemical and morphological analysis of the evolution of battery electrode materials can b...
To monitor dynamic volume changes of electrode materials during electrochemical lithium storage and ...
In this study, we prepared single-walled carbon nanotube electrodes for lithium–air batteries (LABs)...
For the development of next-generation batteries it is important to understand the structural change...
For the development of next-generation batteries it is important to understand the structural change...
Increasing the energy and power density simultaneously remains a major challenge for improving elect...
Batteries can store energy from alternative, intermittent sources via chemical reactions for later u...
We present an operando study of a lithium ion battery combining scanning X-ray diffraction (SXRD) an...
In this thesis, two electrode materials for a new generation of post lithium ion batteries were inv...
The main challenges facing rechargeable batteries today are: (1) increasing the electrode capacity; ...
<p>For the development of next-generation batteries it is important to understand the structural cha...
In ANL laboratories, disordered carbons with predictable surface area and porosity properties have b...
International audienceIn order to improve the electrochemical performances of lithium–sulfur batteri...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The key to advancing lithium-ion battery technology-in particular, fast charging-is the ability to f...
A complete chemical and morphological analysis of the evolution of battery electrode materials can b...