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Density and Compressibility of Liquid Water and Ice from First-Principles Simulations with Hybrid Functionals
89
Citations
72
References
2015
Year
First-principles SimulationsEngineeringLiquid-liquid FlowFluid MechanicsComputational ChemistryChemistryHybrid FunctionalsSimple LiquidMolecular DynamicsNumerical SimulationMolecular KineticsIce-water SystemPhysicsPbe0 FunctionalPhysical ChemistryQuantum ChemistryLiquid WaterNatural SciencesApplied PhysicsHydrogen-bonded LiquidFluid-solid InteractionEquilibrium Density
We determined the equilibrium density and compressibility of water and ice from first-principles molecular dynamics simulations using gradient-corrected (PBE) and hybrid (PBE0) functionals. Both functionals predicted the density of ice to be larger than that of water, by 15 (PBE) and 35% (PBE0). The PBE0 functional yielded a lower density of both ice and water with respect to PBE, leading to better agreement with experiment for ice but not for liquid water. Approximate inclusion of dispersion interactions on computed molecular-dynamics trajectories led to a substantial improvement of the PBE0 results for the density of liquid water, which, however, resulted to be slightly lower than that of ice.
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