Computing the Tungsten–Nitrogen Phase Diagram at High Pressure and High Temperature and Further Ternary W–N Compounds
ORAL
Abstract
We compute the tungsten–nitrogen (W–N) pressure–temperature phase diagram through a combination of density functional theory and thermodynamic calculations. Augmenting standard enthalpy-pressure calculations by the chemical potential change of nitrogen at high pressure and high temperature conditions, we estimate Gibbs energies under nitrogen-rich conditions. The approach allows to predict temperature and pressure conditions necessary to synthesize W–N polymorphs and to locate optimum pressure/temperature conditions with maximum driving force for successful syntheses. Our investigations includeW2N3, W3N5, W2N2(N2), WN6, and recently synthesized WN8-N2. Further studies address ternary Li–W–N compounds with W in high oxidation state, namely Li6WN4, Li6WN6, and Li6WN8.
*This work was supported by the National Science Foundation (NSF) through award OISE- 1743701. The computational work was made possible through generous grants by the Texas Advance Computing Center in Austin, TACC, Texas, and by the High Performance Computing facilities at UTA. H.A. acknowledges support by the Saudi Arabian Cultural Mission.
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Presenters
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Hanof Alkhaldi
- University of Texas at Arlington