Rational design of active electrode materials is important for the development of advanced lithium and post-lithium batteries. Ab initio modeling can provide mechanistic understanding of the performance of prospective materials and guide design. We review our recent comparative ab initio studies of lithium, sodium, potassium, magnesium, and aluminum interactions with different phases of several actively experimentally studied electrode materials, including monoelemental materials carbon, silicon, tin, and germanium, oxides TiO2 and VxOy as well as sulphur-based spinels MS2 (M = transition metal). These studies are unique in that they provided reliable comparisons, i.e., at the same level of theory and using the same computational parameters...
Electrochemical energy conversion and storage systems are set to play a major role in the scheme of ...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
International audienceRecently, different and unexpected electrochemical behaviours have been demons...
Rational design of active electrode materials is important for the development of advanced lithium a...
Ab initio methods have started to be widely used in materials science for the prediction of properti...
This thesis uses first principles techniques, mainly the ab initio random structure searching method...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
Multivalent ion batteries (MVIBs) provide economical and energy-dense alternatives to Li-ion batteri...
Since the discovery of batteries in the 1800s, their fascinating physical and chemical properties h...
All-solid-state batteries show its great potential for being the next-generation source of clean ene...
© 2020 Johnson Matthey Portable electronic devices, electric vehicles and stationary energy storage ...
In this work, we have compared the potential applications of nine different elements doped Mg2NiH4 a...
At present time, sodium-based batteries are considered as the most viable candidates for replacing w...
Solid-state argyrodite electrolytes are promising candidate materials to produce safe all-solid-stat...
Solid-state batteries have the potential to revolutionise energy storage. Their rapid development re...
Electrochemical energy conversion and storage systems are set to play a major role in the scheme of ...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
International audienceRecently, different and unexpected electrochemical behaviours have been demons...
Rational design of active electrode materials is important for the development of advanced lithium a...
Ab initio methods have started to be widely used in materials science for the prediction of properti...
This thesis uses first principles techniques, mainly the ab initio random structure searching method...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
Multivalent ion batteries (MVIBs) provide economical and energy-dense alternatives to Li-ion batteri...
Since the discovery of batteries in the 1800s, their fascinating physical and chemical properties h...
All-solid-state batteries show its great potential for being the next-generation source of clean ene...
© 2020 Johnson Matthey Portable electronic devices, electric vehicles and stationary energy storage ...
In this work, we have compared the potential applications of nine different elements doped Mg2NiH4 a...
At present time, sodium-based batteries are considered as the most viable candidates for replacing w...
Solid-state argyrodite electrolytes are promising candidate materials to produce safe all-solid-stat...
Solid-state batteries have the potential to revolutionise energy storage. Their rapid development re...
Electrochemical energy conversion and storage systems are set to play a major role in the scheme of ...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
International audienceRecently, different and unexpected electrochemical behaviours have been demons...