Exploring the Subtle Effect of Aliphatic Ring Size on Minor Actinide-Extraction Properties and Metal Ion Speciation in Bis-1,2,4-Triazine Ligands |
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Authors: | Dr. Andrey V. Zaytsev Dr. Rachel Bulmer Prof. Valery N. Kozhevnikov Dr. Mark Sims Dr. Giuseppe Modolo Dr. Andreas Wilden Dr. Paul G. Waddell Dr. Andreas Geist Prof. Petra J. Panak Patrik Wessling Dr. Frank W. Lewis |
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Affiliation: | 1. Department of Applied Sciences, Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne, NE1 8ST UK;2. Forschungszentrum Jülich GmbH, Institut für Energie und Klimaforschung—Nukleare Entsorgung und Reaktorsicherheit (IEK-6), 52428 Jülich, Germany;3. School of Natural and Environmental Sciences, Newcastle University, Kings Road, Newcastle upon Tyne, NE1 7RU UK;4. Institute for Nuclear Waste Disposal (INE), Karlsruhe Institute of Technology (KIT), 76021 Karlsruhe, Germany;5. Institute for Nuclear Waste Disposal (INE), Karlsruhe Institute of Technology (KIT), 76021 Karlsruhe, Germany Ruprecht-Karls-Universität Heidelberg, Physikalisch-Chemisches Institut, Im Neuenheimer Feld 234, 69120 Heidelberg, Germany |
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Abstract: | The synthesis and evaluation of three novel bis-1,2,4-triazine ligands containing five-membered aliphatic rings are reported. Compared to the more hydrophobic ligands 1 – 3 containing six-membered aliphatic rings, the distribution ratios for relevant f-block metal ions were approximately one order of magnitude lower in each case. Ligand 10 showed an efficient, selective and rapid separation of AmIII and CmIII from nitric acid. The speciation of the ligands with trivalent f-block metal ions was probed using NMR titrations and competition experiments, time-resolved laser fluorescence spectroscopy and X-ray crystallography. While the tetradentate ligands 8 and 10 formed LnIII complexes of the same stoichiometry as their more hydrophobic analogues 2 and 3 , significant differences in speciation were observed between the two classes of ligand, with a lower percentage of the extracted 1:2 complexes being formed for ligands 8 and 10 . The structures of the solid state 1:1 and 1:2 complexes formed by 8 and 10 with YIII, LuIII and PrIII are very similar to those formed by 2 and 3 with LnIII. Ligand 10 forms CmIII and EuIII 1:2 complexes that are thermodynamically less stable than those formed by ligand 3 , suggesting that less hydrophobic ligands form less stable AnIII complexes. Thus, it has been shown for the first time how tuning the cyclic aliphatic part of these ligands leads to subtle changes in their metal ion speciation, complex stability and metal extraction affinity. |
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Keywords: | actinides lanthanides solvent extraction spent nuclear fuel triazine ligands |
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