A novel CMPO (carbamoylmethylphosphine oxide) based task specific ionic liquid (TSIL) with an NTf2− counter anion was synthesized and evaluated for actinide/lanthanide extraction from acidic feed solutions using several room temperature ionic liquids (RTILs). The extraction data were compared with those obtained with CMPO in the same set of RTILs and also in the molecular diluent, n-dodecane. The extracted species were analyzed by the conventional slope analysis method and the extraction followed an ion-exchange mechanism. The nature of bonding in the extracted complexes was investigated by various spectroscopic techniques such as FT-IR and UV-visible spectroscopy
The extraction separation of rare earth elements is one of the most challenging separation processes...
This project seeks to determine if (1) inorganic-based ion exchange materials or (2) electrochemical...
International audienceFor the first time, the study of a three-step extraction system of water/ionic...
A novel CMPO (carbamoylmethylphosphine oxide) based task specific ionic liquid (TSIL) with an NTf2− ...
Two new diglycolamide-based task-specific ionic liquids (DGA[BOND]TSILs) were evaluated for the extr...
International audienceExtraction of U(VI), Eu(III) and Am(III) has been performed from acidic aqueou...
A diglycolamide (DGA)-functionalized task specific ionic liquid (TSIL) was used for the extraction o...
The complexation of neptunium in its 4+ and 6+ oxidation states was investigated using two task-spec...
A 3.6 × 10−2 M solution of a diglycolamide-functionalized task specific ionic liquid (DGA-TSIL) in [...
Diglycolamide-functionalized calix[4]arenes (C4DGAs) with varying structural modifications were eval...
An overview of the properties and applications of f-elements in room temperature ionic liquids with ...
Cette thèse s’inscrit dans la perspective du renouveau de l’énergie nucléaire et du développement de...
The extraction of actinide ions such as Am(III), Pu(IV), Np(IV), U(VI) and Pu(VI) was studied from s...
Ionic liquids are solvents that consist entirely of ions. These nonvolatile and nonflammable solvent...
The extraction of both UO22+ and trivalent lanthanide and actinide ions (Am3+, Nd3+, Eu3+) by dialky...
The extraction separation of rare earth elements is one of the most challenging separation processes...
This project seeks to determine if (1) inorganic-based ion exchange materials or (2) electrochemical...
International audienceFor the first time, the study of a three-step extraction system of water/ionic...
A novel CMPO (carbamoylmethylphosphine oxide) based task specific ionic liquid (TSIL) with an NTf2− ...
Two new diglycolamide-based task-specific ionic liquids (DGA[BOND]TSILs) were evaluated for the extr...
International audienceExtraction of U(VI), Eu(III) and Am(III) has been performed from acidic aqueou...
A diglycolamide (DGA)-functionalized task specific ionic liquid (TSIL) was used for the extraction o...
The complexation of neptunium in its 4+ and 6+ oxidation states was investigated using two task-spec...
A 3.6 × 10−2 M solution of a diglycolamide-functionalized task specific ionic liquid (DGA-TSIL) in [...
Diglycolamide-functionalized calix[4]arenes (C4DGAs) with varying structural modifications were eval...
An overview of the properties and applications of f-elements in room temperature ionic liquids with ...
Cette thèse s’inscrit dans la perspective du renouveau de l’énergie nucléaire et du développement de...
The extraction of actinide ions such as Am(III), Pu(IV), Np(IV), U(VI) and Pu(VI) was studied from s...
Ionic liquids are solvents that consist entirely of ions. These nonvolatile and nonflammable solvent...
The extraction of both UO22+ and trivalent lanthanide and actinide ions (Am3+, Nd3+, Eu3+) by dialky...
The extraction separation of rare earth elements is one of the most challenging separation processes...
This project seeks to determine if (1) inorganic-based ion exchange materials or (2) electrochemical...
International audienceFor the first time, the study of a three-step extraction system of water/ionic...