CdP 2 N 4 and MnP 2 N 4 – Ternary Transition‐Metal Nitridophosphates

The ternary transition‐metal nitridophosphates CdP 2 N 4 and MnP 2 N 4 have been synthesized under high‐pressure high‐temperature conditions (5–8 GPa, 1000–1300 °C) by using the multianvil technique. Cd and Mn azides can be used as the starting materials, however, with respect to safety consideratio...

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Veröffentlicht in:European journal of inorganic chemistry 2016-04, Vol.2016 (10), p.1497-1502
Hauptverfasser: Pucher, Florian J., Karau, Friedrich W., Schmedt auf der Günne, Jörn, Schnick, Wolfgang
Format: Artikel
Sprache:eng
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Zusammenfassung:The ternary transition‐metal nitridophosphates CdP 2 N 4 and MnP 2 N 4 have been synthesized under high‐pressure high‐temperature conditions (5–8 GPa, 1000–1300 °C) by using the multianvil technique. Cd and Mn azides can be used as the starting materials, however, with respect to safety considerations, it is much more advantageous to start from metal powders and phosphorus nitride imide, HPN 2 . Both nitridophosphates crystallize in a structure closely related to the megacalsilite structure type. As a result of the known issues concerning superstructures with this type of structure, TEM investigations were performed on CdP 2 N 4 , which revealed that the megacalsilite superstructure is not equally pronounced in all crystallites. By adding NH 4 Cl as mineralizer, single crystals were obtained that exhibit unequally pronounced superstructure reflections. Consequently, an averaged structural model was used and refined by the Rietveld method [ P 6 3 22, a = 16.7197(3), c = 7.6428(2) Å, V = 1850.3(2) Å 3 , R p = 0.0671, wR p = 0.0869 for CdP 2 N 4 and P 6 3 22, a = 16.5543(2), c = 7.5058(2) Å, V = 1781.3(1) Å 3 , R p = 0.0526, wR p = 0.0697 for MnP 2 N 4 ]. The 31 P NMR spectra exhibit four signal groups at (6.4, 4.8), 0.8, and –9.7 ppm with pronounced shoulders belonging to the same phase in an approximate area ratio of 4.8:1.1:2.0, thereby proving at least eight P sites.
ISSN:1434-1948
1099-0682
DOI:10.1002/ejic.201600042