Functionalised Mesoporous Zirconium Titanium Oxide Materials

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Details

A series of hybrid mesoporous materials were synthesised through the functionalisation of pre-formed porous zirconium titanium oxide phases using a range of commercially available phosphonic acids. A fundamental study on the hydrolytic stability and chemical durability of these materials in aqueous acidic conditions were conducted. Polyphosphonic acids have been recognised as the most stable surface species. With potential use of these materials for the nuclear industry in view, a study of the irradiation stability of the un-functionalised zirconium titanium oxides were conducted. Changes to the structural morphology were found from physical characterisation techniques evidencing the overall decrease in surface area, pore volume and mass density with increased doses. A similar irradiation study was also carried out for functionalised zirconium titanium oxides. Structural characterisation revealed a drop in surface area, pore diameter and pore volume, along with a rise in mass density after exposure to high levels of radiation. A loss of functionalised phosphonate molecules was also observed by thermal analysis under the same conditions.

Autorentext

Dr Massey de los Reyes completed a bachelor's degree in Applied Chemistry in 2005, honour's degree in Nanotechnology and Biomaterials in 2006 and a doctoral degree in Materials Science/Engineering in 2010 all from the University of South Australia. Currently she is a post-doctoral research fellow.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783846540114
    • Sprache Englisch
    • Auflage Aufl.
    • Genre Chemie
    • Größe H220mm x B220mm
    • Jahr 2012
    • EAN 9783846540114
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-8465-4011-4
    • Titel Functionalised Mesoporous Zirconium Titanium Oxide Materials
    • Autor Massey de los Reyes
    • Untertitel An investigation into the properties of phosphonate functionalised mesoporous ZrTi mixed metal oxides
    • Herausgeber LAP Lambert Academic Publishing
    • Anzahl Seiten 204

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