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Accurate, Large-Scale Density Functional Melting of Hg: Relativistic Effects Decrease Melting Temperature by 160 K.

Krista G SteenbergenElke PahlPeter Schwerdtfeger
Published in: The journal of physical chemistry letters (2017)
Using first-principles calculations and the "interface pinning" method in large-scale density functional molecular dynamics simulations of bulk melting, we prove that mercury is a liquid at room temperature due to relativistic effects. The relativistic model gives a melting temperature of 241 K, in excellent agreement with the experimental temperature of 234 K. The nonrelativistic melting temperature is remarkably high at 402 K.
Keyphrases
  • high resolution
  • molecular dynamics simulations
  • room temperature
  • ionic liquid
  • mass spectrometry
  • molecular docking
  • fluorescent probe