Published September 28, 2012 | Version v1
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Polynuclear compounds of uranium: structure, reactivity and properties

Description

The study and comprehension of actinide's fundamental chemistry have important implications both for the development of new nuclear fuel and for the nuclear fuel reprocessing. One of the major issues in these processes is the ease of uranium to undergo redox reactions and to form polynuclear assemblies, which largely perturb these processes. However, despite their relevance, only few synthetic routes towards polynuclear uranium assemblies are described in the literature, and most of the polynuclear complexes reported are formed by serendipity rather than by rational design. Moreover, polynuclear uranium compounds are highly promising for the design of magnetic materials with improved properties and for reactivity studies. The aim of this work is the synthesis of polynuclear uranium complexes and the study of their reactivity and coordination properties. New synthetic routes to uranium polynuclear assemblies were developed and the study of their physico-chemical properties was carried out. The first approach investigated was based on pentavalent uranyl chemistry. Uranyl(V) is known to form aggregates via an interaction between uranyl moieties often named cation-cation interaction, but the isolation of uranyl(V) complexes had been largely limited by its ease of disproportionation. We isolated the first stable uranyl(V) polynuclear assembly using Salen-type Schiff base ligand. Based on this result, a fine tuning of the ligand and counter-ion properties resulted in the isolation of a large family of uranyl(V) polynuclear assemblies and in a better understanding of the parameters ruling their stability. Moreover, rare examples of clear antiferromagnetic couplings were observed with these complexes. In addition, this synthetic path was used to build the first 5f-3d cluster presenting single molecule magnet properties. The second approach used in this thesis consisted in the synthesis of oxo/hydroxo uranium clusters. The controlled hydrolysis of trivalent uranium in presence of an environmentally relevant ligand lead to the synthesis of clusters, which size could be varied in function of the reaction conditions employed. Finally, new uranium clusters with original topologies were synthesised through the induced disproportionation of pentavalent uranyl precursors. (author)

Abstract (French)

L'etude et la comprehension de la chimie fondamentale des actinides constitue un axe de recherche privilegie notamment dans le cadre de la technologie nucleaire tant en amont pour le developpement de nouveaux combustibles qu'en aval pour l'etude du retraitement des dechets nucleaires. Une des problematiques principales au cours de ces etudes reside dans la capacite que possedent les actinides a subir des reactions redox et a former des assemblages polynucleaires. Neanmoins, tres peu d'assemblages polynucleaires peuvent etre synthetises de maniere reproductible, la plupart des complexes polynucleaires d'actinides decrits dans la litterature sont formes de facon fortuite plutot que par conception rationnelle. En outre, les assemblages polynucleaires d'uranium ont ete identifies comme particulierement prometteurs pour l'elaboration de materiaux magnetiques et pour leur reactivite. L'objectif de ce travail reside dans la synthese d'assemblages polymetalliques a base d'uranium en mettant a profit quelques aspects de sa reactivite redox et de sa chimie de coordination. De nouvelles voies de synthese de composes polynucleaires d'uranium ont ete developpees, et l'etude des proprietes physico-chimique des composes a ete realisee. La premiere approche utilisee repose sur la synthese d'assemblages d'uranyle pentavalent. L'uranyle pentavalent est connu pour sa facilite d'agregation via des interactions entre groupement uranyles appelees interaction cation-cation, mais l'isolation de ce type de compose a ete tres largement limitee par l'instabilite de l'uranyle(V) vis-a-vis de la dismutation. L'utilisation de ligands base de Schiff de type salen a permis dans ces travaux l'isolation du premier assemblage polynucleaire d'uranyle(V). Sur la base de ce resultat, la variation des ligands et des contre-ions utilises a permis l'isolation d'une large famille d'assemblages polynucleaires d'uranyle(V) et l'etude fine des parametres regissant leur stabilite. Par ailleurs, l'etude des proprietes magnetiques de ces assemblages a mis en valeur de rares exemples couplages antiferromagnetiques. En outre, cette voie de synthese a ete exploitee pour synthetiser le premier cluster 5f/3d presentant des proprietes de molecule aimant. Le deuxieme axe d'approche suivi dans ce travail repose sur l'isolation de clusters oxo/hydroxo d'uranium. La reactivite d'hydrolyse de complexes d'uranium trivalent en presence de ligand a pertinence environnementale a permis la synthese d'assemblages d'uranium dont la taille a pu etre variee en fonction des conditions de synthese employees. Enfin, de nouveaux assemblages presentant des topologies originales ont ete isoles en exploitant la reactivite de dismutation de precurseurs d'uranium pentavalent

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Additional details

Additional titles

Original title (English)
Complexes polynucleaires d'uranium: structure, reactivite et proprietes

Publishing Information

Imprint Pagination
297 p.
Report number
FRCEA-TH--3779

Optional Information

Notes
332 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/INIS/contacts/