The potential of Raman diagnostics for spatially-resolved in situ diagnostics of LiCoO2 electrodes for lithium-ion batteries is demonstrated. In situ Raman spectra of LiCoO2 composite electrodes are characterized by LiCoO2 phonon bands as well as carbon- and electrolyte-related features. Spatially-resolved Raman analysis, i.e. Raman mapping prior electrochemical cycling reveals a variation of chemical composition across the electrode surface. Comparison of in situ spectra prior and after electrochemical cycling shows a spatially-dependent redistribution of composition as derived from changes in the LiCoO2-carbon peak ratios. The results of the in situ mapping experiments are dicussed in the context of degradation of lithium-ion batteries
International audienceAn in-situ temperature-controlled Raman spectroscopy aided unique electrode fa...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li...
LiCoO2 based electrode materials were characterized in detail using visible Raman spectroscopy. The ...
The purpose of this review is to acknowledge the current state-of-the-art and the progress of in sit...
A novel in situ cell for Raman diagnostics of working lithium-ion batteries is described. The design...
A novel in situ cell for Raman diagnostics of working lithium-ion batteries is described. The design...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
International audienceAn in-situ temperature-controlled Raman spectroscopy aided unique electrode fa...
International audienceAn in-situ temperature-controlled Raman spectroscopy aided unique electrode fa...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li...
LiCoO2 based electrode materials were characterized in detail using visible Raman spectroscopy. The ...
The purpose of this review is to acknowledge the current state-of-the-art and the progress of in sit...
A novel in situ cell for Raman diagnostics of working lithium-ion batteries is described. The design...
A novel in situ cell for Raman diagnostics of working lithium-ion batteries is described. The design...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
International audienceAn in-situ temperature-controlled Raman spectroscopy aided unique electrode fa...
International audienceAn in-situ temperature-controlled Raman spectroscopy aided unique electrode fa...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li...