Issue 13, 2019

Synthesis and characterisation of a quaternary nitride series with spin-glass behaviour: SnxGe1−xFe3N

Abstract

We present the chemical synthesis, crystal-structure determination, and magnetic properties of the quaternary iron nitrides SnxGe1−xFe3N (0 < x < 1). The ternary end members of this series differ in structure, composition, and stability, but both belong to the first spin glasses of iron nitrides. To explore the properties of the quaternary series, a previously established two-step ammonolytic reaction was used to synthesise the compounds. The entire SnxGe1−xFe3N series adopts the antiperovskite structure in space group Pm[3 with combining macron]m with a fully occupied nitrogen position and a Vegard-type increase of the lattice parameter over the compositional range. AC and DC magnetic measurements identify the nitrides of all compositions as canonical spin glasses with a linear increase of Tg from 4 K for Ge-rich to 9 K for Sn-rich nitrides. The competing magnetic orders were confirmed by DFT calculations.

Graphical abstract: Synthesis and characterisation of a quaternary nitride series with spin-glass behaviour: SnxGe1−xFe3N

Supplementary files

Article information

Article type
Paper
Submitted
06 Sep 2018
Accepted
27 Feb 2019
First published
28 Feb 2019

J. Mater. Chem. C, 2019,7, 3822-3828

Synthesis and characterisation of a quaternary nitride series with spin-glass behaviour: SnxGe1−xFe3N

T. Scholz and R. Dronskowski, J. Mater. Chem. C, 2019, 7, 3822 DOI: 10.1039/C8TC04500C

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