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Mass density fluctuations in quantum and classical descriptions of liquid water.

Mirza GalibTimothy T DuignanYannick MisteliMarcel D BaerGregory K SchenterJürg HutterChristopher J Mundy
Published in: The Journal of chemical physics (2018)
First principles molecular dynamics simulation protocol is established using revised functional of Perdew-Burke-Ernzerhof (revPBE) in conjunction with Grimme's third generation of dispersion (D3) correction to describe the properties of water at ambient conditions. This study also demonstrates the consistency of the structure of water across both isobaric (NpT) and isothermal (NVT) ensembles. Going beyond the standard structural benchmarks for liquid water, we compute properties that are connected to both local structure and mass density fluctuations that are related to concepts of solvation and hydrophobicity. We directly compare our revPBE results to the Becke-Lee-Yang-Parr (BLYP) plus Grimme dispersion corrections (D2) and both the empirical fixed charged model (SPC/E) and many body interaction potential model (MB-pol) to further our understanding of how the computed properties herein depend on the form of the interaction potential.
Keyphrases
  • molecular dynamics simulations
  • ionic liquid
  • randomized controlled trial
  • air pollution
  • molecular docking
  • magnetic resonance imaging
  • magnetic resonance
  • human health
  • risk assessment