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XAFS analyses of molten metal fluorides
Authors:Haruaki Matsuura  Sou Watanabe  Hiroshi Akatsuka  Ashok K Adya
Affiliation:a Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology, 2-12-1-N1-10, Ookayama, Meguro-ku, Tokyo 152-8550, Japan
b Conditions Extrêmes et Matériaux: Haute Température et Irradiation, 1D avenue de la recherche scientifique, 45071 Orléans, cedex 2, France
c le STUDIUM, Institute for advanced studies in region centre, 3D avenue de la recherche scientifique, 45071 Orléans, cedex 2, France
d Japan Atomic Energy Agency, Kansai Photon Science Institute, Kouto 1-1-1, Sayo-cho, Sayo-gun, Hyogo 679-5148, Japan
e Condensed Matter Group & BIONTH Centre, School of Contemporary Sciences, University of Abertay Dundee, Bell Street, Dundee DD1 1HG, UK
Abstract:X-ray absorption fine structure studies of molten metal fluorides containing the materials related to nuclear engineering are intensively summarized. By using XAFS spectra data of divalent and trivalent cation metal fluorides in molten state which have been collected by authors’ group for a few years, local structure have been extracted and discussed systematically in conjunction with other spectroscopic studies and numerical calculations. In molten divalent fluorides, tetrahedral coordination of fluorides around a cation is predominant. In the case of pure molten trivalent fluorides, structure with more than 6-coordination has been suggested in some cases, but octahedral coordination structure is much stabilized at heavier rare earth metal fluorides. By mixing with alkali metal fluorides, it is a general trend that inter-ionic distances keep constant, but coordination number of fluorides decreases. In experimental chapter, all the details of sample preparation, furnace installation, X-ray optics setups and data analyses procedures are explained. Finally, future expectations of XAFS technique are also suggested.
Keywords:Molten metal fluoride  Rare earth metal fluoride  Alkaline-earth metal fluoride  Lead fluoride  X-ray absorption fine structure  Pyrochemical treatment  Molten salt reactor  Local structure analysis  Synchrotron radiation
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