Electron-density analysis of halide...halide through-space magnetic exchange

ORAL

Abstract

We present a combined experimental and density functional theory study that characterizes the charge and spin density in NiX2(3,5-lutidine)4 (X = Cl, Br and I). In this material, magnetic exchange interactions occur via Ni2+–halide… halide–Ni2+ pathways, forming one-dimensional chains. We find evidence for weak halide...halide covalency in the iodine system, which is greatly reduced when X = Br and is absent for X = Cl; this is consistent with the reported ‘switching-on’ of magnetic exchange in the larger-halide cases. Our results are benchmarked against density functional theory calculations on [NiHF2(pyrazine)2]SbF6, in which the primary magnetic exchange is mediated by F–H–F bridging ligands. This comparison indicates that, despite the largely depleted charge density found at the centre of halide...halide bonds, these through-space interactions can support strong magnetic exchange gated by weak covalency and enhanced by significant electron density overlapping that of the transition metal centres.

Publication: R. Scatena et al., Journal of Applied Crystallography 58, 363-373 (2025)

Presenters

  • Roger D Johnson

    • Durham University

Authors

  • Roger D Johnson

    • Durham University
  • Rebecca Scatena

    • Diamond Light Source Ltd
  • Zachary E Manson

    • Eastern Washington University
  • Jamie L Manson

    • Eastern Washington University
  • David R Allan

    • Diamond Light Source
  • Paul A Goddard

    • University of Warwick