In this thesis photoelectron spectroscopy (PES) is combined with electrochemistry to investigate the electrochemical processes that occur at the electrode/electrolyte interfaces in lithium-ion batteries (LIBs). LIB systems are studied by the use of both ex situ PES, where electrodes are electrochemically pre-cycled and subsequently measured by PES, and operando PES, where electrodes are cycled during PES measurements. Ex situ PES is used to determine the main degradation mechanisms of a novel high capacity material, Li2VO2F. The capacity fade seen for Li2VO2F. is found to be related to an irreversible oxidation of the active material at high voltages, and a continuous surface layer formation at low voltages. To decrease the capacity fading...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...
In this thesis photoelectron spectroscopy (PES) is combined with electrochemistry to investigate the...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...
In this thesis photoelectron spectroscopy (PES) is combined with electrochemistry to investigate the...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
Many of the challenges faced in the development of lithium-ion batteries (LIBs) and next-generation ...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The stability of electrode/electrolyte interfaces in Li-ion batteries is crucial to the performance,...
The important electrochemical processes in a battery happen at the solid/liquid interfaces. Operando...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...
Compounds forming alloys with lithium, such as silicon or tin, are promising negative electrode mate...