The lithiation and delithiation mechanisms of multiple Sn particles in a customized flat radiography cell were investigated by in amp; 8197;situ synchrotron radiography. For the first time, four de lithiation phenomena in a Sn electrode battery system are highlighted 1 amp; 8197;the de lithiation behavior varies between different Sn particles, 2 amp; 8197;the time required to lithiate individual Sn particles is markedly different from the time needed to discharge the complete battery, 3 amp; 8197;electrochemical deactivation of originally electrochemically active particles is reported, and 4 amp; 8197;a change of electrochemical behavior of individual particles during cycling is found and explained by dynamic changes of de lithiatio...
Renewable technologies, and in particular the electric vehicle revolution, have generated tremendous...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The intermediate Li Sn alloy phases during de lithiation are identified, and their dynamic phase tra...
The lithiation and delithiation mechanisms of multiple Sn particles in a customized flat radiography...
The morphological evolution of tin particles with different sizes during the first lithiation and de...
Silicon (Si) and Tin (Sn) particles are highly attractive materials to use within composite electrod...
The world-wide effort to produce and use cleaner energy also necessitates more advanced energy stora...
Tin (Sn) is a potential anode material for highenergy density Li-ion batteries because of its high c...
High capacity lithium ion (Li+) host materials, such as silicon (Si) and tin (Sn), serve as potentia...
Operando phase contrast radiography combined with impedance spectroscopy and electron microscopy is ...
Dynamic and direct visualization of interfacial evolution is helpful in gaining fundamental knowled...
International audienceLithium-ion (LIB) batteries, thanks to their high energy density and capacity,...
Fundamental understanding of phenomena that occur at the electrode/electrolyte interface during char...
Silicon Si is proposed to be one of the most promising anode materials for next generation lithium...
Extensive research for new energy storage materials has created a high demand for experimental techn...
Renewable technologies, and in particular the electric vehicle revolution, have generated tremendous...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The intermediate Li Sn alloy phases during de lithiation are identified, and their dynamic phase tra...
The lithiation and delithiation mechanisms of multiple Sn particles in a customized flat radiography...
The morphological evolution of tin particles with different sizes during the first lithiation and de...
Silicon (Si) and Tin (Sn) particles are highly attractive materials to use within composite electrod...
The world-wide effort to produce and use cleaner energy also necessitates more advanced energy stora...
Tin (Sn) is a potential anode material for highenergy density Li-ion batteries because of its high c...
High capacity lithium ion (Li+) host materials, such as silicon (Si) and tin (Sn), serve as potentia...
Operando phase contrast radiography combined with impedance spectroscopy and electron microscopy is ...
Dynamic and direct visualization of interfacial evolution is helpful in gaining fundamental knowled...
International audienceLithium-ion (LIB) batteries, thanks to their high energy density and capacity,...
Fundamental understanding of phenomena that occur at the electrode/electrolyte interface during char...
Silicon Si is proposed to be one of the most promising anode materials for next generation lithium...
Extensive research for new energy storage materials has created a high demand for experimental techn...
Renewable technologies, and in particular the electric vehicle revolution, have generated tremendous...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
The intermediate Li Sn alloy phases during de lithiation are identified, and their dynamic phase tra...