The ability to locally tune solute-water interactions and thus control the hydrophilic/hydrophobic character of a solute is key to control molecular self-assembly and to develop new drugs and biocatalysts; it has been a holy grail in synthetic chemistry and biology. To date, the connection between (i) the hydrophobicity of a functional group; (ii) the local structure and thermodynamics of its hydration shell; and (iii) the relative influence of van der Waals (dispersion) and electrostatic interactions on hydration remains unclear. We investigate this connection using spectroscopic, classical simulation and ab initio methods by following the transition from hydrophile to hydrophobe induced by the step-wise fluorination of methyl groups. Alon...
Recent breakthroughs in the theory of hydrophobic effects permit new analyses of several characteris...
The aqueous mixture of 2,2,2-trifluoroethanol (TFE) is one of the important alcoholic solvents which...
International audienceThe capability of molecular density functional theory in its lowest, second-or...
The interplay between the local hydration shell structure, the length of hydrophobic solutes, and th...
International audienceWater, being the universal solvent, acts as a competing agent in fundamental p...
Water is the most studied molecule in the history of scientific research, and yet much remains unkno...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Experimental values of the Gibbs free energies of hydration for a set of nonpolar or very slightly p...
Fluorination can dramatically improve the thermal and proteolytic stability of proteins and their en...
The aversion of hydrophobic solutes for water drives diverse interactions and assemblies across mate...
The importance of the small size of a water molecule as contributing to the hydrophobic effect is ex...
International audienceThis paper assesses the ability of molecular density functional theory to pred...
Recent breakthroughs in the theory of hydrophobic effects permit new analyses of several characteris...
The aqueous mixture of 2,2,2-trifluoroethanol (TFE) is one of the important alcoholic solvents which...
International audienceThe capability of molecular density functional theory in its lowest, second-or...
The interplay between the local hydration shell structure, the length of hydrophobic solutes, and th...
International audienceWater, being the universal solvent, acts as a competing agent in fundamental p...
Water is the most studied molecule in the history of scientific research, and yet much remains unkno...
Hydrogen bonds profoundly influence the architecture and activity of biological macromolecules. Deep...
Experimental values of the Gibbs free energies of hydration for a set of nonpolar or very slightly p...
Fluorination can dramatically improve the thermal and proteolytic stability of proteins and their en...
The aversion of hydrophobic solutes for water drives diverse interactions and assemblies across mate...
The importance of the small size of a water molecule as contributing to the hydrophobic effect is ex...
International audienceThis paper assesses the ability of molecular density functional theory to pred...
Recent breakthroughs in the theory of hydrophobic effects permit new analyses of several characteris...
The aqueous mixture of 2,2,2-trifluoroethanol (TFE) is one of the important alcoholic solvents which...
International audienceThe capability of molecular density functional theory in its lowest, second-or...