Noncovalent hydrogen bonding in metal-organic structures

ORAL

Abstract

Transition metal sites in metal-organic frameworks and in doped carbon structures are actively being studied for their binding properties of molecular hydrogen. We present a study of prototypical metal-organic structures that can be used to bind molecular hydrogen non-covalently. Due to the well known limitations of current density functional theory based descriptions of non-covalent hydrogen bonding we have focused our efforts on a consistent many-body approach based on the fixed-node diffusion Monte Carlo method. Accurate studies of binding energies and the effects of multiple hydrogens in these structures are presented. Prepared by LLNL under Contract DE-AC52-07NA27344

Authors

  • Norm M. Tubman

    • Lawrence Livermore National Laboratory
  • Jonathan L. Dubois

    • Lawrence Livermore National Laboratory
  • Randolph Q. Hood

    • Lawrence Livermore National Laboratory
  • Sebastien Hamel

    • LLNL
    • Lawrence Livermore National Laboratory
  • Eric Schwegler

    • Lawrence Livermore National Laboratory, Livermore, CA 94551
    • LLNL
    • Lawrence Livermore National Laboratory
    • Physics and Life Sciences Division, Lawrence Livermore National Laboratory