Highly selective hydrophilic ligands were believed to be an efficient way to overcome the massive amount of hazardous organic solvent used in the liquid–liquid extraction process and stood as a new frontier in the Lns(III)/Ans(III) partition. Current reported hydrophilic ligands suffer from harsh preparation conditions, inferior extraction performances, limited available chemical structures, and inability to carry out extraction under high acidity. In this article, we report a simple yet efficient carboxylic group modified phenanthroline-diimide ligand which displayed unexpected Lns(III)/Ans(III) and Ans(III)/Ans(III) separation capabilities in 1.5 M HNO3. Unique dimeric architectures for Eu(III) complexes were observed, which could be the ...
Cyanex301, a dithiophosphinic acid, selectively extracts trivalent actinides (e.g., Am(III)) over tr...
The novel and fully combustible hydrophilic 1,10-phenanthroline-2,9-dicarboxamide (1) was synthesize...
The mechanism of synergistic selective extraction of Am(III) over Eu(III) from aqueous nitric acid s...
Highly selective hydrophilic ligands were believed to be an efficient way to overcome the massive am...
Four lipophilic 1,10-phenanthroline di(thio)amide, diester or diketone derivatives were studied as l...
The design and development of a water-soluble heterocyclic ligand are believed to be an alternative ...
Recently, phenanthroline-based ligands have received increasing attention due to their excellent sep...
The separation by solvent extraction of Am-241(III) from Eu-152(III), in 1 M NaNO3 weakly acidic (pH...
The novel hydrophilic back-extraction agent TS-BTPhen (3,3ʹ,3ʺ,3ʹʺ-[3-(1,10-phenanthroline-2,9-diyl)...
The novel hydrophilic back-extraction agent TS-BTPhen (3,3’,3’’,3’’’-[3-(1,10-phenanthroline-2,9-diy...
Phenanthroline diamide ligands have been widely used in the separation of trivalent actinides and la...
Nitrogen-donor ligands have been considered to be promising agents for separating trivalent actinide...
The synthesis, Eu<sup>3+</sup> complexation, and solvent extraction of Am<sup>3+</sup> and Eu<sup>3+...
Phenanthroline based ligands have shown potential performance for partitioning trivalent actinides f...
Phenanthroline-diamide ligands have been reported in the selective separation of actinides over Eu(I...
Cyanex301, a dithiophosphinic acid, selectively extracts trivalent actinides (e.g., Am(III)) over tr...
The novel and fully combustible hydrophilic 1,10-phenanthroline-2,9-dicarboxamide (1) was synthesize...
The mechanism of synergistic selective extraction of Am(III) over Eu(III) from aqueous nitric acid s...
Highly selective hydrophilic ligands were believed to be an efficient way to overcome the massive am...
Four lipophilic 1,10-phenanthroline di(thio)amide, diester or diketone derivatives were studied as l...
The design and development of a water-soluble heterocyclic ligand are believed to be an alternative ...
Recently, phenanthroline-based ligands have received increasing attention due to their excellent sep...
The separation by solvent extraction of Am-241(III) from Eu-152(III), in 1 M NaNO3 weakly acidic (pH...
The novel hydrophilic back-extraction agent TS-BTPhen (3,3ʹ,3ʺ,3ʹʺ-[3-(1,10-phenanthroline-2,9-diyl)...
The novel hydrophilic back-extraction agent TS-BTPhen (3,3’,3’’,3’’’-[3-(1,10-phenanthroline-2,9-diy...
Phenanthroline diamide ligands have been widely used in the separation of trivalent actinides and la...
Nitrogen-donor ligands have been considered to be promising agents for separating trivalent actinide...
The synthesis, Eu<sup>3+</sup> complexation, and solvent extraction of Am<sup>3+</sup> and Eu<sup>3+...
Phenanthroline based ligands have shown potential performance for partitioning trivalent actinides f...
Phenanthroline-diamide ligands have been reported in the selective separation of actinides over Eu(I...
Cyanex301, a dithiophosphinic acid, selectively extracts trivalent actinides (e.g., Am(III)) over tr...
The novel and fully combustible hydrophilic 1,10-phenanthroline-2,9-dicarboxamide (1) was synthesize...
The mechanism of synergistic selective extraction of Am(III) over Eu(III) from aqueous nitric acid s...