A detailed understanding of the atomistic processes within a lithium ion battery is expected to facilitate the progress of energy storage technology, which is a key element for the exit from nuclear and fossil--fuel energy. Nuclear magnetic resonance (NMR) spectroscopy can provide information about local electronic structure and dynamic properties of battery materials by addressing the nuclear spins of lithium (Li). Support by independent $\textit{ab initio}$ simulations is indispensable to meet the challenges presented by state--of--the--art electrode materials in NMR spectroscopy. In this thesis, the initial steps towards a novel, theoretical multi--scale method for retracing Li NMR experiments on battery materials are presented. First, t...
Enhancing the electrochemical performance of batteries, including the lifespan, energy, and power de...
This thesis presents a combined experimental and theoretical approach on studying Mg-ion battery ele...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
NMR spectroscopy of paramagnetic solids provides detailed information about the local configuration ...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Li-ion batteries have revolutionised energy storage in portable electronics. 30 years later, batteri...
Improving electrochemical energy storage is one of the major issues of our time. The search for new ...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
While lithium metal represents the ultimate high-energy-density battery anode material, its use is l...
Identifying and characterizing defects in crystalline solids is a challenging problem, particularly ...
Enhancing the electrochemical performance of batteries, including the lifespan, energy, and power de...
This thesis presents a combined experimental and theoretical approach on studying Mg-ion battery ele...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
For studying electrode and electrolyte materials for lithium ion batteries, solid-state (SS) nuclear...
NMR spectroscopy of paramagnetic solids provides detailed information about the local configuration ...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Li-ion batteries have revolutionised energy storage in portable electronics. 30 years later, batteri...
Improving electrochemical energy storage is one of the major issues of our time. The search for new ...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
While lithium metal represents the ultimate high-energy-density battery anode material, its use is l...
Identifying and characterizing defects in crystalline solids is a challenging problem, particularly ...
Enhancing the electrochemical performance of batteries, including the lifespan, energy, and power de...
This thesis presents a combined experimental and theoretical approach on studying Mg-ion battery ele...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...