Charged (e.g., colloidal) particles in aqueous solutions will sometimes behave as though their effective charge has reversed, rather than reduced, by the attracted counterions. This is counterintuitive because it increases the electrostatic energy, but it has been proposed that lateral ordering of the ions could lower the free energy and favor overcharging (charge inversion). Using X-ray diffraction, we have observed sharp diffraction peaks from incommensurate Er<sup>3+</sup> counterion monolayers near charged surfaces formed by floating molecular monolayers. When the counterion lattice does not match the molecular surface lattice, this means that there is no specific attachment of ions, and thus the ionic lattice is formed due to interacti...
We examine the force between two equally charged surfaces that is mediated by rod-like counterions o...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...
Based on the two state model, we study the condensation of counterions on oppositely charged membran...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
The study of the electrical double layer lies at the heart of colloidal and interfacial science. The...
Counterion behavior controls interactions between charged surfaces in aqueous environments, and can ...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumula...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumulat...
In this letter, we study the complexation of spherical colloidal particles induced by oppositely cha...
In this letter, we study the ground state of two spherical macroions of identical radius, but asymme...
In this article, we investigate experimentally a wide range of situations where charge inversion (i....
A theory is presented for the effective charge of colloidal particles in suspensions containing mult...
"We report molecular dynamics simulation of the (overall neutral) system consisting of an immobile m...
We examine the force between two equally charged surfaces that is mediated by rod-like counterions o...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...
Based on the two state model, we study the condensation of counterions on oppositely charged membran...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
The study of the electrical double layer lies at the heart of colloidal and interfacial science. The...
Counterion behavior controls interactions between charged surfaces in aqueous environments, and can ...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumula...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumulat...
In this letter, we study the complexation of spherical colloidal particles induced by oppositely cha...
In this letter, we study the ground state of two spherical macroions of identical radius, but asymme...
In this article, we investigate experimentally a wide range of situations where charge inversion (i....
A theory is presented for the effective charge of colloidal particles in suspensions containing mult...
"We report molecular dynamics simulation of the (overall neutral) system consisting of an immobile m...
We examine the force between two equally charged surfaces that is mediated by rod-like counterions o...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...
A highly-charged spherical colloid in a salt-free environment exerts such a powerful attraction on i...