Revisiting the Thermal Decomposition of Layered γ-Titanium Phosphate and Structural Elucidation of Its Intermediate Phases

The thermal transformations of γ-titanium phosphate, Ti(PO4)(H2PO4)·2H2O, have been studied by thermal analyses (thermogravimetry (TG) and differential thermal analysis (DTA)) and variable-temperature 31P magic-angle spinning (MAS)/CPMAS and 2D 31P−31P spin-exchange NMR. The structure of this materi...

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Veröffentlicht in:Inorganic chemistry 2010-03, Vol.49 (6), p.2630-2638
Hauptverfasser: García-Granda, Santiago, Khainakov, Sergei A, Espina, Aranzazu, García, José R, Castro, Germán R, Rocha, João, Mafra, Luís
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Sprache:eng
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Zusammenfassung:The thermal transformations of γ-titanium phosphate, Ti(PO4)(H2PO4)·2H2O, have been studied by thermal analyses (thermogravimetry (TG) and differential thermal analysis (DTA)) and variable-temperature 31P magic-angle spinning (MAS)/CPMAS and 2D 31P−31P spin-exchange NMR. The structure of this material has been refined from synchrotron powder X-ray diffraction data (monoclinic, P21, a = 5.1811(2) Å, b = 6.3479(2) Å, c = 23.725(2) Å, β = 102.57(1)°). Vyazovkin’s model-free kinetic algorithms have been applied to determine the apparent activation energy to both dehydration and dehydroxylation of γ-titanium phosphate. In these processes, several overlapped steps have been detected. Structural models for Ti(PO4)(H2PO4)·H2O and Ti(PO4)(H2P2O7)0.5 intermediate layered phases have been proposed.
ISSN:0020-1669
1520-510X
DOI:10.1021/ic901254j