Abstract
The dehydration of ZnRb4(P3O9)2.6H2O was investigated, between 25 and 600°C, by TG-DTA, X-ray diffraction, IR. It leads, between 300 and 500°C, to a mixture of long chain polyphosphates RbPO3 and ZnRb2(PO3)4 which stays stable until its melting point. The IR (1400-30 cm-1) and Raman spectra (1400-100 cm-1) of ZnRb4(P3O9)2.6H2O are reported and assignments of fundamental modes proposed and compared with theoretical results obtained via the MNDO method for P3O9 ring with Cs symmetry. (La déshydratation, sous pression atmosphérique, du cyclotriphosphate ZnRb4(P3O9)2.6H2O, a été effectuée, entre 25 and 600°C, par spectrométrie IR, diffraction des rayons X, ATG et ATD. Elle conduit, entre 300 and 500°C, au mélange de polyphosphates RbPO3 et ZnRb2 (PO3)4 qui reste stable jusqu'à la fusion. Les spectres vibrationnels IR (1400-30 cm-1) et Raman (1400-100 cm-1) du sel étudié ont été interprétés dans le domaine des vibrations de valence et de déformation du cycle P3O9 et comparés avec les résultats des calculs théoriques par la méthode MNDO pour un cycle isolé de symétrie Cs).
| Translated title of the contribution | Study of physicochemical properties of ZnRb4(P3O9)2.6H2O |
|---|---|
| Original language | French |
| Pages (from-to) | 605-619 |
| Number of pages | 15 |
| Journal | Phosphorus, Sulfur and Silicon and Related Elements |
| Volume | 177 |
| Issue number | 3 |
| DOIs | |
| State | Published - 2002 |
| Externally published | Yes |
Keywords
- Cyclotriphosphate
- IR and Raman spectra
- Rubidium polyphosphate dehydration
- ZnRb-salt
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