Electrochemical stability is a critical performance parameter for the materials used as electrolytes and electrodes in batteries. Using first-principles electronic structure calculations, we have determined the electrochemical stability windows of magnesium binary and ternary spinel compounds. These materials are candidates for protective coating, solid electrolytes and cathodes in Mg-ion batteries, which represent a promising sustainable alternative to Li-ion batteries that still dominate the battery market. Furthermore, we have applied and assessed two different criteria for the chemical stability of compounds. For the spinel materials, we identify the critical role of the ionic radii of the transition metal for the stability of the compo...
International audienceRechargeable magnesium batteries are gaining a lot of interest due to promisin...
Multivalent batteries are an energy storage technology with the potential to surpass lithium-ion bat...
Magnesium batteries are currently attracting a lot of interest as a next generation battery technolo...
Mg batteries utilizing a Mg metal anode with a high-voltage intercalation cathode define a potential...
Mg batteries utilizing a Mg metal anode with a high-voltage intercalation cathode define a potential...
Magnesium batteries appear a viable alternative to overcome the safety and energy density limitation...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Seven MgLn2X4 (Ln = lanthanoid, X = S, Se) spinels are calculated with density functional theory to ...
The rapid growth of portable consumer electronics and electric vehicles demands new battery technolo...
Magnesium oxide and sulfide spinels have recently attracted interest as cathode and electrolyte mate...
Magnesium oxide and sulfide spinels have recently attracted interest as cathode and electrolyte mate...
Solid-state batteries have significant advantages over conventional liquid batteries, providing impr...
Rational design of novel electrolytes with enhanced functionality requires fundamental molecular-lev...
International audienceRechargeable magnesium batteries are gaining a lot of interest due to promisin...
Multivalent batteries are an energy storage technology with the potential to surpass lithium-ion bat...
Magnesium batteries are currently attracting a lot of interest as a next generation battery technolo...
Mg batteries utilizing a Mg metal anode with a high-voltage intercalation cathode define a potential...
Mg batteries utilizing a Mg metal anode with a high-voltage intercalation cathode define a potential...
Magnesium batteries appear a viable alternative to overcome the safety and energy density limitation...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Seven MgLn2X4 (Ln = lanthanoid, X = S, Se) spinels are calculated with density functional theory to ...
The rapid growth of portable consumer electronics and electric vehicles demands new battery technolo...
Magnesium oxide and sulfide spinels have recently attracted interest as cathode and electrolyte mate...
Magnesium oxide and sulfide spinels have recently attracted interest as cathode and electrolyte mate...
Solid-state batteries have significant advantages over conventional liquid batteries, providing impr...
Rational design of novel electrolytes with enhanced functionality requires fundamental molecular-lev...
International audienceRechargeable magnesium batteries are gaining a lot of interest due to promisin...
Multivalent batteries are an energy storage technology with the potential to surpass lithium-ion bat...
Magnesium batteries are currently attracting a lot of interest as a next generation battery technolo...