<i>Ab initio</i> prediction of Metal Organic Frameworks

ORAL

Abstract

First-principles crystal structure prediction is a well established technique which is routinely used across a diverse range of systems such as periodic solids, interfaces, and encapsulated nanowires. Here we present the first example of ab initio prediction of a Metal-Organic Framework (MOF).
We use the Ab Inito Random Structure Searching1 method and introduce a new approach for generating trial crystal structures from molecular fragments2. Our method makes use of molecular symmetries to directly generate structures with molecules on special Wyckoff sites.To test our approach we searched for a selection of Zinc based MOFs with differing ligands and metal coordination. These results are presented alongside a more detailed discussion of the method and its application beyond MOFs.

1. Pickard, C. J.; Needs, R. J. J. Phys. Condens. Matter 2011, 23, 053201.
2. Darby, James P.; Arhangelskis, Mihails; Katsenis, Athanassios D.; Marrett, Joseph; Friscic, Tomislav; Morris, Andrew J. (2019): Ab Initio Prediction of Metal-Organic Framework Structures. ChemRxiv. Preprint.

*SIMS scholarship
Birmingham Fellowship
NSERC Discovery Grant (RGPIN-2017-06467)
NSERC E. W. R. Steacie Fellowship (SMFSU 507347-17)
NSERC Strategic Grant (STPGP 521582-18)
EPSRC Capital Grant (EP/P020259/1)
EPSRC Grant (EP/P022561/1)

Presenters

  • James Darby

    • Department of Physics, University of Cambridge

Authors

  • James Darby

    • Department of Physics, University of Cambridge
  • Mihails Arhangelskis

    • Faculty of Chemistry, University of Warsaw
  • Athanassios Katsenis

    • Department of Chemistry, McGill University
  • Joseph Marrett

    • Department of Chemistry, McGill University
  • Tomislav Friščić

    • Department of Chemistry, McGill University
  • Andrew J Morris

    • Metallurgy and Materials, University of Birmingham
    • Univ of Birmingham