The surface morphology of CuFeS$_2$: A hybrid-exchange density functional study

ORAL

Abstract

The surface morphology of CuFeS$_2$ has been determined using hybrid-exchange density functional theory calculations. The (110) surface is identified to be the most stable non-polar surface with a surface energy of 0.58 Jm$^{-1}$. The polar (112)/($\overline{112}$) surface pair is shown to be remarkably stable and thermodynamically preferred to the (110) surface if certain defects are included. The stability of the polar (112)/($\overline{112}$) surface pair is attributed to a combination of geometric and electronic mechanisms localised to the (112) surface which combine to neutralise the electrostatic dipole perpendicular to the surface. The former entails a partial reversal of the surface atomic layer sequence while the latter involves dispersion of charge from the subsurface anions to neighbouring cations. Because of its stability, (112) and ($\overline{112}$) facets always form a significant portion of the Wulff construction regardless of the growth conditions.

*VHC was supported by the CDT in Theory and Simulation of Materials at Imperial College funded by EPSRC grant EP/G036888/1. In addition, this work was supported by the Rio Tinto Centre for Advanced Mineral Recovery at Imperial College London.

Authors

  • Vincent Huair-Yu Chen

    • Department of Physics, Imperial College London, London SW7 2AZ, United Kingdom
  • Ruth Martinez Casado

    • Department of Theoretical Condensed Matter Physics, Autonomous University of Madrid, 28049 Madrid, Spain
  • Giuseppe Mallia

    • Thomas Young Centre, Department of Chemistry, Imperial College London, London SW7 2AZ, United Kingdom
  • Nicholas Harrison

    • Thomas Young Centre, Department of Chemistry, Imperial College London, London SW7 2AZ, United Kingdom
    • Imperial College
    • Imperial College London