The stability of dispersions containing charged particles may obviously be regulated by salt. In some systems, the effective charge, as measured by the potential some small distance away from the particles, can have a sign opposite to the bare surface charge. If charge reversal takes place, there is typically a salt concentration regime within which colloidal stability increases with added salt. These experimental findings on dispersions have been corroborated by atomic force microscopy investigations, where an attraction is found at short separations. This attraction is stronger than expected from standard DLVO theory, and there has been considerable debate concerning its origin. In this work, we use simple coarse-grained models of these s...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
We use a combination of simulations and a simple theoretical approach to investigate interactions be...
In this work, we simulate interactions between two perfectly conducting surfaces, immersed in a salt...
In this work, we simulate interactions between two perfectly conducting surfaces, immersed in a salt...
This thesis concerns the electrostatic properties of charged objects that are immersed into an ionic...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
Like-charged macromolecules repel in electrolyte solutions that contain small (i.e. point-like) mono...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...
We use a combination of simulations and a simple theoretical approach to investigate interactions be...
In this work, we simulate interactions between two perfectly conducting surfaces, immersed in a salt...
In this work, we simulate interactions between two perfectly conducting surfaces, immersed in a salt...
This thesis concerns the electrostatic properties of charged objects that are immersed into an ionic...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
Like-charged macromolecules repel in electrolyte solutions that contain small (i.e. point-like) mono...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
In this letter we investigate the mechanism for the overcharging of a single spherical colloid in th...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
We have performed MD simulations of a highly charged colloid in a solution of 3:1 and additional 1:1...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
In answer to recent experimental force measurements between oppositely charged surfaces we here repr...
We perform atomistic simulations of nanometer-separated charged surfaces in the presence of monovale...