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The application of the thermodynamic perturbation theory to study the hydrophobic hydration.


ABSTRACT: The thermodynamic perturbation theory was tested against newly obtained Monte Carlo computer simulations to describe the major features of the hydrophobic effect in a simple 3D-Mercedes-Benz water model: the temperature and hydrophobe size dependence on entropy, enthalpy, and free energy of transfer of a simple hydrophobic solute into water. An excellent agreement was obtained between the theoretical and simulation results. Further, the thermodynamic perturbation theory qualitatively correctly (with respect to the experimental data) describes the solvation thermodynamics under conditions where the simulation results are difficult to obtain with good enough accuracy, e.g., at high pressures.

SUBMITTER: Mohoric T 

PROVIDER: S-EPMC3724728 | biostudies-other | 2013 Jul

REPOSITORIES: biostudies-other

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