Recent surface forces apparatus experiments that measured the forces between two mica surfaces and a series of subsequent theoretical studies suggest the occurrence of universal underscreening in highly concentrated electrolyte solutions. We performed a set of systematic Atomic Force Spectroscopy measurements for aqueous salt solutions in a concentration range from 1 mM to 5 M using chloride salts of various alkali metals as well as mixed concentrated salt solutions (involving both mono- and divalent cations and anions), that mimic concentrated brines typically encountered in geological formations. Experiments were carried out using flat substrates and submicrometer-sized colloidal probes made of smooth oxidized silicon immersed in salt sol...
Thin films (0–30 nm) of very concentrated aqueous monovalent salt solutions (2–10 M of LiCl, NaCl, a...
Forces between negatively charged silica particles in aqueous electrolyte solutions were measured wi...
The current understanding of intermolecular and interfacial forces in concentrated electrolytes is l...
Recent surface forces apparatus experiments that measured the forces between two mica surfaces and a...
Recent experiments and a series of subsequent theoretical studies suggest the occurrence of universa...
We use atomic force microscopy (AFM) to determine electrostatic interactions between Si tips and Si ...
The force between silica spheres and naturally oxidised silicon wafer has been measured in calcium c...
In atomic force microscopy, the tip experiences electrostatic, van der Waals, and hydration forces w...
In atomic force microscopy, the tip experiences electrostatic, van der Waals, and hydration forces w...
The interactions between supported cationic surfactant bilayers were measured by colloidal probe ato...
The hydration force was introduced after the observation that clays and lipid bilayers swell spontan...
The interactions between supported cationic surfactant bilayers were measured by colloidal probe ato...
This paper describes the measured forces between a spherical silica particle and a planar oxidized s...
Abstract—Using a surface forces apparatus (SFA), we have studied the interactions between mica surfa...
An atomic force microscope, employing the colloidal probe technique, was used to study the interacti...
Thin films (0–30 nm) of very concentrated aqueous monovalent salt solutions (2–10 M of LiCl, NaCl, a...
Forces between negatively charged silica particles in aqueous electrolyte solutions were measured wi...
The current understanding of intermolecular and interfacial forces in concentrated electrolytes is l...
Recent surface forces apparatus experiments that measured the forces between two mica surfaces and a...
Recent experiments and a series of subsequent theoretical studies suggest the occurrence of universa...
We use atomic force microscopy (AFM) to determine electrostatic interactions between Si tips and Si ...
The force between silica spheres and naturally oxidised silicon wafer has been measured in calcium c...
In atomic force microscopy, the tip experiences electrostatic, van der Waals, and hydration forces w...
In atomic force microscopy, the tip experiences electrostatic, van der Waals, and hydration forces w...
The interactions between supported cationic surfactant bilayers were measured by colloidal probe ato...
The hydration force was introduced after the observation that clays and lipid bilayers swell spontan...
The interactions between supported cationic surfactant bilayers were measured by colloidal probe ato...
This paper describes the measured forces between a spherical silica particle and a planar oxidized s...
Abstract—Using a surface forces apparatus (SFA), we have studied the interactions between mica surfa...
An atomic force microscope, employing the colloidal probe technique, was used to study the interacti...
Thin films (0–30 nm) of very concentrated aqueous monovalent salt solutions (2–10 M of LiCl, NaCl, a...
Forces between negatively charged silica particles in aqueous electrolyte solutions were measured wi...
The current understanding of intermolecular and interfacial forces in concentrated electrolytes is l...