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Synthesis of bis(amidoxime)s and evaluation of their properties as uranyl-complexing agents
Authors:Jérémy Stemper  Wei Tuo  Eva Mazarío  Ahmed S Helal  Alexandre Djurovic  Claude Lion  Jean-Michel El Hage Chahine  François Maurel  Miryana Hémadi  Thierry Le Gall
Institution:1. CEA-Université Paris-Saclay, Institut Joliot, Service de Chimie Bioorganique et de Marquage, Bât. 547, 91191 Gif-sur-Yvette, France;2. Univ Paris Diderot, Sorbonne Paris Cité – Interfaces, Traitements, Organisation et Dynamique des Systèmes, CNRS-UMR 7086, Bât. Lavoisier, 15 rue Jean-Antoine de Baïf, 75205 Paris Cedex 13, France;3. Department of Nuclear Science and Engineering, Massachusetts Institute of Technology, USA
Abstract:Uranium pollution involves high toxicity and radioactivity and, therefore, constitutes a grave threat to human health and the environment. Chelation is an effective method for sequestering uranium. It is well known that chelators based on oxime groups are able to complex uranyl cations efficiently. To this end, various bis(amidoxime)s were synthesized by reaction of hydroxylamine with the corresponding dinitriles. In these compounds the amidoximes are separated by chains of various lengths, some including a heterocycle (pyridine or 1,3,5-triazine). The abilities of these bis(amidoxime)s to complex uranyl cation in water were evaluated by determining their affinity constants and thermodynamic parameters by means of Isothermal Titration Calorimetry (ITC). DFT calculations were also performed, to determine the optimum structures of the complexes formed between uranyl cations and the oximate groups. A tetrakis(amidoxime), also synthesized in this work, shows good affinity for uranium, and a single molecule is able chelate several uranyl cations. These results are of importance for the remediation of uranium-polluted wastewaters, and open up several perspectives for the design and synthesis of new amidoxime compounds.
Keywords:Amidoxime  Uranyl  Metal complexation  Affinity constant  Synthesis
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