Tetra‐Face‐Capped Octahedra in a Tetrahedra Network – Structure Determination and Scanning Transmission Electron Microscopy of SrAl5P4N10O2F3

Author:

Pointner Monika M.1ORCID,Oeckler Oliver2ORCID,Schnick Wolfgang1ORCID

Affiliation:

1. Department of Chemistry University of Munich (LMU) Butenandtstraße 5–13 81377 Munich Germany

2. Institute for Mineralogy Crystallography and Material Science Leipzig University Scharnhorststraße 20 04275 Leipzig Germany

Abstract

AbstractTetrahedra‐based nitridophosphates show a rich structural chemistry, which can be further extended by incorporating cations in higher coordinated positions, for example, in octahedral voids or by substituting the nitrogen atoms in the network with other anions. Following this approach, SrAl5P4N10O2F3 was synthesized at high‐temperature and high‐pressure conditions using a multianvil press (1400 °C, 5 GPa) starting from Sr(N3)2, c‐PON, P3N5, AlN, and NH4F. SrAl5P4N10O2F3 crystallizes in space group with a=11.1685(2) and c=7.84850(10) Å. Atomic‐resolution EDX mapping with scanning transmission electron microscopy (STEM) indicates atom assignments, which are further corroborated by bond‐valence sum (BVS) calculations. Ten Al3+‐centered octahedra form a highly condensed tetra‐face‐capped octahedra‐based unit that is a novel structure motif in network compounds. A network of vertex‐sharing PN4 tetrahedra and chains of face‐sharing Sr2+‐centered cuboctahedra complement the structure. Eu2+‐doped SrAl5P4N10O2F3 shows blue emission (λem=469 nm, fwhm=98 nm; 4504 cm−1) when irradiated with UV light.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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