Abstract: We report ab initio molecular dynamics simulations of hydroxide and hydronium ions near a hydrophobic interface, indicating that both ions behave like amphiphilic surfactants that stick to a hydrophobic hydrocarbon surface with their hydrophobic side. We show that this behavior originates from the asymmetry of the molecular charge distribution which makes one end of the ions strongly hydrophobic while the other end is even more hydrophilic than the regular water (H2O) molecules. The effect is more pronounced for the hydroxide than for the hydronium. Our results are consistent with several experimental observations and explain why hydrophobic surfaces in contact with water acquire a net negative charge, a phenomenon that has import...
The effective charge of hydrophobic surfaces and in particular of the air–water interface is a cruci...
The surface-active ions tetraphenylarsonium (Ph<sub>4</sub>As<sup>+</sup>) and tetraphenylboron (Ph<...
We report a molecular dynamics study on the distribution of spherical hydrophobic ions S(+) and S(-)...
We present results from detailed molecular dynamics simulations revealing a counterintuitive spontan...
We present results from detailed molecular dynamics simulations revealing a counterintuitive spontan...
International audienceAqueous interfaces are ubiquitous in Nature and play a fundamental role in env...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
Aqueous interfaces are ubiquitous in Nature and play a fundamental role in environmental or biologic...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Much is written about "hydrophobic forces" that act between solvated molecules and nonpolar interfac...
Using a two-step modeling approach, we address the full spectrum of direct, reversed, and altered io...
International audienceIt is increasingly being accepted that solvation properties of ions and interf...
Using a two-step modeling approach, we address the full spectrum of direct, reversed, and altered io...
The effective charge of hydrophobic surfaces and in particular of the air–water interface is a cruci...
The surface-active ions tetraphenylarsonium (Ph<sub>4</sub>As<sup>+</sup>) and tetraphenylboron (Ph<...
We report a molecular dynamics study on the distribution of spherical hydrophobic ions S(+) and S(-)...
We present results from detailed molecular dynamics simulations revealing a counterintuitive spontan...
We present results from detailed molecular dynamics simulations revealing a counterintuitive spontan...
International audienceAqueous interfaces are ubiquitous in Nature and play a fundamental role in env...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
Aqueous interfaces are ubiquitous in Nature and play a fundamental role in environmental or biologic...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
The interfacial behavior of hydroxide ions has been investigated by means of molecular dynamics simu...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Much is written about "hydrophobic forces" that act between solvated molecules and nonpolar interfac...
Using a two-step modeling approach, we address the full spectrum of direct, reversed, and altered io...
International audienceIt is increasingly being accepted that solvation properties of ions and interf...
Using a two-step modeling approach, we address the full spectrum of direct, reversed, and altered io...
The effective charge of hydrophobic surfaces and in particular of the air–water interface is a cruci...
The surface-active ions tetraphenylarsonium (Ph<sub>4</sub>As<sup>+</sup>) and tetraphenylboron (Ph<...
We report a molecular dynamics study on the distribution of spherical hydrophobic ions S(+) and S(-)...