Lithium ion battery electrolytes based on LiPF6 and organic solvents are known to degrade at elevated temperatures. The degradation reactions can be caused either chemically e.g. by simple contact with battery cell components and/or electrochemically during cycling. This study is focused on thermally induced chemical reactions of the electrolyte with different battery cell components. These reactions are monitored by means of quantitative NMR spectroscopy. The results allow for categorizing the influences of the components according to their reactivity against HF. Inert materials (graphite, carbon black, polyvinylidene difluoride, polyolefinic and ceramic separator) do not show any observable influence on the thermal stability of the electr...
The thermal stability of the neat LiPF6 salt and of 1 molal solutions of LiPF6 in prototypical Li-io...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
[[abstract]]©2004 Electrochem - The type of lithium salts (LiPF6 and LiClO4) was found to have a str...
The state-of-the-art electrolyte of the lithium-ion batteries (LIBs) present in most portable electr...
The state of the art lithium-ion batteries present in most portable electronics consist of the salt ...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
The thermal decomposition of LiPF6 in solution with carbonate solvents has been investigated. The th...
The thermal stability of the neat LiPF6 salt and of 1 molal solutions of LiPF6 in prototypical Li-i...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Abstract Lithium-ion batteries are widely used as a power source for portable equipment. However, th...
Lithium-ion batteries have been extensively investigated as power sources for electric vehicles due ...
Independent of the specific electrode chemistry, the state-of-the-art lithium ion battery electrolyt...
Thermal stability studies of electrolytes with mixtures of LiPF6 and LiBF4 were carried out using di...
Thermal stability of lithium-ion battery electrolytes composed of LiPF 6 in a mixture of organic car...
The thermal stability of the neat LiPF6 salt and of 1 molal solutions of LiPF6 in prototypical Li-io...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
[[abstract]]©2004 Electrochem - The type of lithium salts (LiPF6 and LiClO4) was found to have a str...
The state-of-the-art electrolyte of the lithium-ion batteries (LIBs) present in most portable electr...
The state of the art lithium-ion batteries present in most portable electronics consist of the salt ...
The thermal decomposition of LiPF6 in the solid state and as solutions in dialkylcarbonates has been...
The thermal decomposition of LiPF6 in solution with carbonate solvents has been investigated. The th...
The thermal stability of the neat LiPF6 salt and of 1 molal solutions of LiPF6 in prototypical Li-i...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Abstract Lithium-ion batteries are widely used as a power source for portable equipment. However, th...
Lithium-ion batteries have been extensively investigated as power sources for electric vehicles due ...
Independent of the specific electrode chemistry, the state-of-the-art lithium ion battery electrolyt...
Thermal stability studies of electrolytes with mixtures of LiPF6 and LiBF4 were carried out using di...
Thermal stability of lithium-ion battery electrolytes composed of LiPF 6 in a mixture of organic car...
The thermal stability of the neat LiPF6 salt and of 1 molal solutions of LiPF6 in prototypical Li-io...
There is an ever increasing demand for fossil fuels. Lithium ion batteries (LIBs) can effectively re...
[[abstract]]©2004 Electrochem - The type of lithium salts (LiPF6 and LiClO4) was found to have a str...