The impact of electrode formation is studied by the spatially and time‐resolved distribution of transverse relaxation. In situ $^{7}$Li nuclear magnetic resonance experiments are performed on an experimental lithium‐ion battery cell to study the impact of electrode passivation via imaging and transverse relaxation in the interelectrode volume. The electrolyte in the battery, using technically relevant electrode material, i.e., graphite and lithium–nickel–cobalt–manganese–oxide, is studied by 2D magnetic resonance imaging. The electrolyte is 1 mol L$^{-1}$ lithium hexafluorophosphate dissolved in a binary mixture of ethylene carbonate and dimethyl carbonate. 1D profiles are acquired and related to $^{7}$Li concentration during passivation an...
In this thesis, magnetic resonance (MR) methods are developed to examine battery chemistries. A meth...
Lithium-ion batteries provide lightweight, energy dense, and efficient power for portable electronic...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Lithium ion cells comprising actual components of positive electrodes (LiCoO2, LiNixCoyAlz, and LiMn...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Nuclear magnetic resonance (NMR) imaging has high sensitivity to proton (1H) and lithium (7Li). It i...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
Lithium ion battery Magnetic resonance imaging Nuclear magnetic resonance Nuclear magnetic resonance...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
A toroid cavity nuclear magnetic resonance (NMR) detector capable of quantitatively recording radial...
An innovative combined magnetic resonance imaging and nuclear magnetic resonance methodology, which ...
7Li MAS NMR spectroscopy was used to study the failure mechanisms of LiNi0.8Co0.15Al0.05O2 electrode...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
In this thesis, magnetic resonance (MR) methods are developed to examine battery chemistries. A meth...
Lithium-ion batteries provide lightweight, energy dense, and efficient power for portable electronic...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
Lithium ion cells comprising actual components of positive electrodes (LiCoO2, LiNixCoyAlz, and LiMn...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
Lithium dendrite growth in lithium ion and lithium rechargeable batteries is associated with severe ...
Nuclear magnetic resonance (NMR) imaging has high sensitivity to proton (1H) and lithium (7Li). It i...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
Lithium ion battery Magnetic resonance imaging Nuclear magnetic resonance Nuclear magnetic resonance...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...
A toroid cavity nuclear magnetic resonance (NMR) detector capable of quantitatively recording radial...
An innovative combined magnetic resonance imaging and nuclear magnetic resonance methodology, which ...
7Li MAS NMR spectroscopy was used to study the failure mechanisms of LiNi0.8Co0.15Al0.05O2 electrode...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
In this thesis, magnetic resonance (MR) methods are developed to examine battery chemistries. A meth...
Lithium-ion batteries provide lightweight, energy dense, and efficient power for portable electronic...
All-solid-state batteries potentially offer safe, high-energy-density electrochemical energy storage...