The Structure of Adsorbed Methane on the MgO(100) Surface from Inelastic Neutron Scattering and First-Principles Calculations

POSTER

Abstract

The adsorption of molecules onto a solid surface is a phenomenon with important ramifications in areas such as catalysis, corrosion, and electronics. We have used plane-wave, psuedopotential-based density functional calculations, in conjunction with inelastic neutron scattering (INS), to evaluate the structure of methane on the MgO(100) surface. The combination of high-resolution INS and high-quality calculations has proven extremely versatile in determining the structural arrangement, despite the existence of multiple energetically favorable arrangements. The structures for adsorbed methane mono-, bi-, and higher order adlayers are discussed.

Authors

  • M.L. Drummond

  • B.G. Sumpter

    • Oak Ridge National Laboratory
  • W.A. Shelton, Jr.

    • Oak Ridge National Laboratory
  • John Larese

    • University of Tennessee
    • Univ of Tennessee / ORNL CSD
    • University of Tennessee/ ORNL CSD
    • Oak Ridge National Laboratory, University of Tennessee
    • Univ. of Tennessee, Knoxville