Ab initio Bethe-Salpeter equation calculations of light absorption and emission in the metal-organic framework Zn-MFU-4l

ORAL

Abstract

Zn-MFU-4l is a metal-organic framework whose light emission can be tuned via anion substitution and guest molecule intercalation. While photoluminescence experiments report light emission that is consistent with self-trapped excitons, the nature and character of the excitons is still far from clear. Here, we compute electronic structure, phonon spectrum, electron-phonon coupling, and optical properties with density functional theory and the ab initio GW-Bethe-Salpeter equation approach for a range of anions. From our calculation of the excitons and phonon spectrum, we assess what part of the framework is involved with exciton self-trapping, and evaluate which modifications to the metal-organic framework structure can change the emission properties of the self-trapped excitons.

*We acknowledge DOE BES-CSGB, DE-SC0019992 for funding and NERSC for computational resources.

Presenters

  • Alex Smith

    • University of California, Berkeley

Authors

  • Alex Smith

    • University of California, Berkeley
  • Beatriz Mouriño

    • Laboratory of Molecular Simulation (LSMO), Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL)
  • Antonios M Alvertis

    • KBR, Inc, NASA Ames Research Center, Moffett Field, Californ
    • Lawrence Berkeley National Laboratory and NASA Ames Research Center
    • Lawrence Berkeley National Laboratory
    • KBR Inc, NASA Ames Research Center, Moffett Field, Materials Science Division, LBNL
  • Jeffrey B Neaton

    • Lawrence Berkeley National Laboratory and UC-Berkeley