Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are promising systems for large‐scale energy storage. However, their application is still limited due to electrode degradation and stability issues. To enhance the fundamental understanding of electrode degradation, we report on the Raman spectroscopic characterization of LiCoO₂ cathode materials of working Li‐ion batteries. To facilitate the spectroscopic analysis of the solid electrolyte interface (SEI), we apply in situ surface‐enhanced Raman spectroscopy under battery working conditions by using Au nanoparticles coated with a thin SiO₂ layer (Au@SiO₂). We observe a surface‐enhanced Raman signal of Li₂CO₃ at 1090 cm⁻¹ during electrochemical cycl...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Rapid decay of silicon anodes during lithiation poses a significant challenge in application of sili...
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...
Sulfide-based Li+ conducting solid electrolytes, such as argyrodite, Li6PS5Cl, for all-solid-state b...
The potential of Raman diagnostics for spatially-resolved in situ diagnostics of LiCoO2 electrodes f...
Abstract Surface‐enhanced Raman spectroscopy (SERS), as a nondestructive and ultra‐sensitive single ...
Abstract: Surface Enhanced Raman Scattering (SERS) was employed to study the Solid Electrolyte Inter...
LiCoO2 based electrode materials were characterized in detail using visible Raman spectroscopy. The ...
Current battery technologies must be improved if they are to be used as the energy storage solution ...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Rapid decay of silicon anodes during lithiation poses a significant challenge in application of sili...
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...
Sulfide-based Li+ conducting solid electrolytes, such as argyrodite, Li6PS5Cl, for all-solid-state b...
The potential of Raman diagnostics for spatially-resolved in situ diagnostics of LiCoO2 electrodes f...
Abstract Surface‐enhanced Raman spectroscopy (SERS), as a nondestructive and ultra‐sensitive single ...
Abstract: Surface Enhanced Raman Scattering (SERS) was employed to study the Solid Electrolyte Inter...
LiCoO2 based electrode materials were characterized in detail using visible Raman spectroscopy. The ...
Current battery technologies must be improved if they are to be used as the energy storage solution ...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Rapid decay of silicon anodes during lithiation poses a significant challenge in application of sili...