Related Experiment Video
Updated: May 27, 2026

An Externally-Heated Diamond Anvil Cell for Synthesis and Single-Crystal Elasticity Determination of Ice-VII at High Pressure-Temperature Conditions
Published on: June 18, 2020
Hydrogen bonds and van der waals forces in ice at ambient and high pressures
Biswajit Santra1, Jiří Klimeš, Dario Alfè
1Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, 14195 Berlin, Germany.
Abstract:
The first principles methods, density-functional theory and quantum Monte Carlo, have been used to examine the balance between van der Waals (vdW) forces and hydrogen bonding in ambient and high-pressure phases of ice. At higher pressure, the contribution to the lattice energy from vdW increases and that from hydrogen bonding decreases, leading vdW to have a substantial effect on the transition pressures between the crystalline ice phases. An important consequence, likely to be of relevance to molecular crystals in general, is that transition pressures obtained from density-functional theory exchange-correlation functionals which neglect vdW forces are greatly overestimated.
Related Concept Videos
Intermolecular Forces
Intermolecular Forces
Intermolecular Forces and Physical Properties
Intermolecular vs Intramolecular Forces
Van der Waals Interactions
Hydrogen Bonds

