Ba12[BN2]6.67H4: A Disordered Anti‐Skutterudite filled with Nitridoborate Anions

Author:

Wandelt Sophia L.1ORCID,Mutschke Alexander23ORCID,Khalyavin Dmitry4ORCID,Steinadler Jennifer1,Karttunen Antti J.5ORCID,Schnick Wolfgang1ORCID

Affiliation:

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

2. Chair of Inorganic Chemistry with Focus in Novel Materials Department of Chemistry TU Munich Lichtenbergstr. 4 85748 Garching Germany

3. Heinz Maier-Leibnitz Zentrum (MLZ) TU Munich Lichtenbergstr. 1 85748 Garching Germany

4. Rutherford Appleton Laboratory ISIS Neutron and Muon Source Didcot OX11 0QX UK

5. Department of Chemistry and Materials Science Aalto University P.O. Box 16100 00076 Aalto Finland

Abstract

AbstractSkutterudites are of high interest in current research due to their diversity of structures comprising empty, partially filled and filled variants, mostly based on metallic compounds. We herein present Ba12[BN2]6.67H4, forming a non‐metallic filled anti‐skutterudite. It is accessed in a solid‐state ampoule reaction from barium subnitride, boron nitride and barium hydride at 750 °C. Single‐crystal X‐ray and neutron powder diffraction data allowed to elucidate the structure in the cubic space group Im (no. 204). The barium and hydride atoms form a three‐dimensional network consisting of corner‐sharing HBa6 octahedra and Ba12 icosahedra. Slightly bent [BN2]3− units are located in the icosahedra and the voids in‐between. 1H and 11B magic angle spinning (MAS) NMR experiments and vibrational spectroscopy further support the structure model. Quantum chemical calculations coincide well with experimental results and provide information about the electronic structure of Ba12[BN2]6.67H4.

Funder

ISIS Neutron and Muon Source

Publisher

Wiley

Subject

General Medicine

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