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Water's hydrogen bonds in the hydrophobic effect: A simple model

  • University of California at San Francisco

Research output: Contribution to journalArticlepeer-review

56 Scopus citations

Abstract

We propose a simple analytical model to account for water's hydrogen bonds in the hydrophobic effect. It is based on computing a mean-field partition function for a water molecule in the first solvation shell around a solute molecule. The model treats the orientational restrictions from hydrogen bonding, and utilizes quantities that can be obtained from bulk water simulations. We illustrate the principles in a 2-dimensional Mercedes-Benz-like model. Our model gives good predictions for the heat capacity of hydrophobic solvation, reproduces the solvation energies and entropies at different temperatures with only one fitting parameter, and accounts for the solute size dependence of the hydrophobic effect. Our model supports the view that water's hydrogen bonding propensity determines the temperature dependence of the hydrophobic effect. It explains the puzzling experimental observation that dissolving a nonpolar solute in hot water has positive entropy.

Original languageEnglish
Pages (from-to)23611-23617
Number of pages7
JournalJournal of Physical Chemistry B
Volume109
Issue number49
DOIs
StatePublished - Dec 15 2005

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