The solvent extraction of Li+ by Cyanex 923 was investigated upon the addition of different imidazolium-based ionic liquids (ILs). The results showed 1-hydroxylethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([HOEmim][NTf2]) can improve the extraction of Li+ most effectively. The fundamental mechanism is that [HOEmim][NTf2] can remarkably enhance the coordination ability of Cyanex 923 to Li+ to form more stable and hydrophobic ion-pair species [Li(Cyanex 923)(n)][NTf2] (n(max) = 3) resulting from the electrostatic interaction and typical hydrogen bonding of IL, and thus facilitating the transfer of Li+ into organic phase. This work has revealed the transfer mechanism of Li+ in a solvent extraction system comprising of IL and neu...
International audienceIn this study, we have investigated the solvent extraction of yttrium(III) and...
A green liquid-liquid extraction (LLE) system was developed for the recovery of lithium (Li+) from s...
Ionic liquids (ILs) are solvents that consist entirely of ions. They have special properties such as...
The solvent extraction of Li+ by Cyanex 923 was investigated upon the addition of different imidazol...
Lithium recovery from alkaline brine was carried out by solvent extraction (SX) using a hydroxyl-fun...
International audienceSolvent extraction of lithium ions from sulfuric acid solutions was investigat...
International audienceThis paper reports the liquid-liquid extraction behavior of lithium ions from ...
In this study, solvation has been found to be a dominant mechanism in an ionic liquid (IL)-based ext...
International audienceThe study of trivalent lanthanoid (La, Nd, Eu, Ho and Lu) extraction by two in...
In this study, the theoretical design of ionic liquids (ILs) for predicting selective extraction of ...
Ionic liquids (ILs) have shown promise as the basis of new systems for the separation of 90Sr,displa...
ABSTRACT: Ionic liquids (ILs) are molten salts that are liquid at room temperature. Although their e...
International audienceThe recovery of lithium from brines is a major field of study with an increase...
The extraction of lithium from aqueous solutions of LiNTf2 and LiCl salts using benzo-15-crown-5 eth...
Ionic liquids as green solvents now have become a research hotspot in the field of separation of met...
International audienceIn this study, we have investigated the solvent extraction of yttrium(III) and...
A green liquid-liquid extraction (LLE) system was developed for the recovery of lithium (Li+) from s...
Ionic liquids (ILs) are solvents that consist entirely of ions. They have special properties such as...
The solvent extraction of Li+ by Cyanex 923 was investigated upon the addition of different imidazol...
Lithium recovery from alkaline brine was carried out by solvent extraction (SX) using a hydroxyl-fun...
International audienceSolvent extraction of lithium ions from sulfuric acid solutions was investigat...
International audienceThis paper reports the liquid-liquid extraction behavior of lithium ions from ...
In this study, solvation has been found to be a dominant mechanism in an ionic liquid (IL)-based ext...
International audienceThe study of trivalent lanthanoid (La, Nd, Eu, Ho and Lu) extraction by two in...
In this study, the theoretical design of ionic liquids (ILs) for predicting selective extraction of ...
Ionic liquids (ILs) have shown promise as the basis of new systems for the separation of 90Sr,displa...
ABSTRACT: Ionic liquids (ILs) are molten salts that are liquid at room temperature. Although their e...
International audienceThe recovery of lithium from brines is a major field of study with an increase...
The extraction of lithium from aqueous solutions of LiNTf2 and LiCl salts using benzo-15-crown-5 eth...
Ionic liquids as green solvents now have become a research hotspot in the field of separation of met...
International audienceIn this study, we have investigated the solvent extraction of yttrium(III) and...
A green liquid-liquid extraction (LLE) system was developed for the recovery of lithium (Li+) from s...
Ionic liquids (ILs) are solvents that consist entirely of ions. They have special properties such as...