Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li-ion batteries. However, understanding and ultimately avoiding these detrimental mechanisms requires continuous tracking of complex electrochemical processes in different battery components. Here, we report an operando spectroscopy method that enables monitoring the chemistry of a carbonate-based liquid electrolyte during electrochemical cycling in Li-ion batteries with a graphite anode and a LiNi0.8Mn0.1Co0.1O2 cathode. By embedding a hollow-core optical fibre probe inside a lab-scale pouch cell, we demonstrate the effective evolution of the liquid electrolyte species by background-free Raman spectroscopy. The analysis of the spectroscopy me...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li...
In this repository are stored the Datasets for the figures displayed in: "Hollow-core optical fibre ...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
The potential of Raman diagnostics for spatially-resolved in situ diagnostics of LiCoO2 electrodes f...
As a high-voltage spinel, LiNi0.5Mn1.5O4 (LNMO) is a promising candidate for high energy density cat...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
Electrolytes and electrodes play an important role for further improvements of lithium-ion batteries...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Improved analytical tools are urgently required to identify degradation and failure mechanisms in Li...
In this repository are stored the Datasets for the figures displayed in: "Hollow-core optical fibre ...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
International audienceImprovements to battery performance, reliability and lifetime are essential to...
The potential of Raman diagnostics for spatially-resolved in situ diagnostics of LiCoO2 electrodes f...
As a high-voltage spinel, LiNi0.5Mn1.5O4 (LNMO) is a promising candidate for high energy density cat...
The ever increasing demand for better-performing Li-ion batteries (LIBs) motivates substantial resea...
Electrolytes and electrodes play an important role for further improvements of lithium-ion batteries...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...
Lithium‐ion batteries are commonly used for electrical energy storage in portable devices and are pr...
The solid electrolyte interphase (SEI) is arguably one of the most critical components of the Li-ion...