Title of article
Specific ion adsorption at the air/water interface: The role of hydrophobic solvation
Author/Authors
Horinek، نويسنده , , Dominik and Herz، نويسنده , , Alexander and Vrbka، نويسنده , , Lubos and Sedlmeier، نويسنده , , Felix and Mamatkulov، نويسنده , , Shavkat I. and Netz، نويسنده , , Roland R.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2009
Pages
11
From page
173
To page
183
Abstract
Classical force fields for molecular simulations of aqueous electrolytes are still controversial. We study alkali and halide ions at the air/water interface using novel non-polarizable force fields that were optimized based on bulk thermodynamics. In qualitative agreement with polarizable force-field simulations, ion repulsion from the interface decreases with increasing ion size. Iodide is even enhanced at the interface, which is rationalized by hydrophobic solvation at the interface, but exhibits a smaller surface propensity than in previous polarizable simulations. Surprisingly, lithium is less repelled than other cations because of its tightly bound hydration shell. A generalized Poisson–Boltzmann approach that includes ionic potentials of mean force from simulation almost quantitatively matches experimental interfacial tension increments for 1 molar sodium halides and alkali chlorides. We conclude that properly optimized non-polarizable force fields are transferable to interfacial environments and hold the potential for unravelling ion-specific effects even in biological situations involving peptidic surfaces.
Journal title
Chemical Physics Letters
Serial Year
2009
Journal title
Chemical Physics Letters
Record number
1927445
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