The energy hierarchy, of the main chemical species involved in the reaction mechanism relevant to the electrodeposition of aluminum in 1-Butyl-3-methylimidazolium chloride/aluminum trichloride solution (BMImCl/AlCl3), is studied by using ab-initio based theoretical calculations. Eventually, a reasonable theoretical estimate of energies, involved in the principal reactions ruling the aluminum electrodeposition from BMImCl ionic liquid solutions, is obtained. For screening purposes (geometry optimization and Hessian calculations) the CAMB3LYP density functional, DFT, has been used. Then single point (exploiting CAMB3LYP optimized geometries) energy data are obtained at the Moller-Plesset (MP2) level of the theory. They are used to cross-check...
Aluminium batteries with non-aqueous electrolyte have initially focused on Lewis acidic ionic liquid...
The observation of a multi-step stripping process at high positive potentials is reported for alumin...
The lack of knowledge on electrochemical reaction pathways for Al/S batteries prevents the developme...
The energy hierarchy, of the main chemical species involved in the reaction mechanism relevant to th...
A finite-element model of the electrodeposition of aluminium from chloroaluminate ionic liquids is i...
Using first-principles calculations and molecular dynamics simulation, we study the working mechanis...
The kinetics of the dissolution and deposition of aluminum from a first generation ionic liquid cons...
The kinetics of the dissolution and deposition of aluminum from a first generation ionic liquid cons...
A promising method for aluminium deposition was proposed by using AlCl(3)/[bmim]Cl (1-butyl-3-methyl...
Aluminium speciation: Aluminium speciation in NTf2 ionic liquids has a strong influence on its elect...
Aluminum was successfully electrodeposited on Al electrodes from aluminum chloride (AlCl3)/triethyla...
Rechargeable batteries based on multivalent ions (Mg2+, Ca2+, Al3+) can have far-reaching applicatio...
Supporting Information: The Supporting Information is available free of charge at https://pubs.acs.o...
Ionic liquids (ILs) are solvents of interest for applications such as electroplating, winning, and r...
AbstractThe addition of 1-butylpyrrolidine to AlCl3 results in the formation of an electrolyte that ...
Aluminium batteries with non-aqueous electrolyte have initially focused on Lewis acidic ionic liquid...
The observation of a multi-step stripping process at high positive potentials is reported for alumin...
The lack of knowledge on electrochemical reaction pathways for Al/S batteries prevents the developme...
The energy hierarchy, of the main chemical species involved in the reaction mechanism relevant to th...
A finite-element model of the electrodeposition of aluminium from chloroaluminate ionic liquids is i...
Using first-principles calculations and molecular dynamics simulation, we study the working mechanis...
The kinetics of the dissolution and deposition of aluminum from a first generation ionic liquid cons...
The kinetics of the dissolution and deposition of aluminum from a first generation ionic liquid cons...
A promising method for aluminium deposition was proposed by using AlCl(3)/[bmim]Cl (1-butyl-3-methyl...
Aluminium speciation: Aluminium speciation in NTf2 ionic liquids has a strong influence on its elect...
Aluminum was successfully electrodeposited on Al electrodes from aluminum chloride (AlCl3)/triethyla...
Rechargeable batteries based on multivalent ions (Mg2+, Ca2+, Al3+) can have far-reaching applicatio...
Supporting Information: The Supporting Information is available free of charge at https://pubs.acs.o...
Ionic liquids (ILs) are solvents of interest for applications such as electroplating, winning, and r...
AbstractThe addition of 1-butylpyrrolidine to AlCl3 results in the formation of an electrolyte that ...
Aluminium batteries with non-aqueous electrolyte have initially focused on Lewis acidic ionic liquid...
The observation of a multi-step stripping process at high positive potentials is reported for alumin...
The lack of knowledge on electrochemical reaction pathways for Al/S batteries prevents the developme...