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Potential of mean force between two hydrophobic solutes in water

  • University of California at San Francisco

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

We study the potential of mean force between two nonpolar solutes in the Mercedes Benz model of water. Using NPT Monte Carlo simulations, we find that the solute size determines the relative preference of two solute molecules to come into contact ('contact minimum') or to be separated by a single layer of water ('solvent-separated minimum'). Larger solutes more strongly prefer the contacting state, while smaller solutes have more tendency to become solvent-separated, particularly in cold water. The thermal driving forces oscillate with solute separation. Contacts are stabilized by entropy, whereas solvent-separated solute pairing is stabilized by enthalpy. The free energy of interaction for small solutes is well-approximated by scaled-particle theory.

Original languageEnglish
Pages (from-to)295-307
Number of pages13
JournalBiophysical Chemistry
Volume101-102
DOIs
StatePublished - Dec 10 2002

Keywords

  • Hydrophobic interaction
  • Potential of mean force
  • Solvent-separated minimum

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