Determination of Equations of State for AlF$_{3}$ and AlI$_{3}$: Semi-empirical Modeling of Extreme Condition Halide Chemistry

POSTER

Abstract

Pressure dependent angle-dispersive x-ray powder diffraction measurements of alpha-phase aluminum trifluoride (alpha-AlF$_{3}$) and separately, aluminum triiodide (AlI$_{3}$) were conducted using a diamond-anvil cell. Results at 295 K extend to 50 GPa. The equations of state of AlF$_{3}$ and AlI$_{3}$ were determined through refinements of collected x-ray patterns. The respective bulk moduli and corresponding pressure derivatives using multiple orders of the Birch-Murngahan, Ff, and Gg EoS models will be discussed. Aluminum trifluoride exhibits no pressure induced structural phase transition while the triiodide data reveal a second-order iso-structural rearrangement: Applied stress transformed a monoclinicly distorted face centered cubic (FCC) structure into a perfect FCC structure. Results from semi-empirical thermochemical computations of energetic materials formulated with fluorine containing reactants will be presented.

Authors

  • Joseph Zaug

    LLNL, Lawerence Livermore National Laboratory, Lawrence Livermore National Laboratory

  • Elissaios Stavrou

    Carnegie Institute of Washington

  • Sorin Bastea

    LLNL, Lawerence Livermore National Laboratory, Lawrence Livermore National Laboratory

  • Alexander Goncharov

    Carnegie Institution for Science, Carnegie Institution of Washington, Geophysical Laboratory, Carnegie Institution of Washington, 5251 Broad Branch Road NW Washington D.C., 20015, Carnegie Institute of Washington

  • Jonathan Crowhurst

    LLNL, Lawerence Livermore National Laboratory, Lawrence Livermore National Laboratory

  • Sarah Roberts

    Lawerence Livermore National Laboratory

  • Jonathan Plaue

    Lawerence Livermore National Laboratory

  • Jeffrey Carter

    picarro.com, Picarro.com

  • Michael Armstrong

    Lawrence Livermore National Laboratory, LLNL, Lawerence Livermore National Laboratory