The review addresses nanomechanics and nanorheology of stimuli responsive microgels adsorbed at an interface. In order to measure the mechanical properties on a local scale, an atomic force microscope is used. The tip presents an indenter with a radius of curvature of a few 10 s of nm. Static indentation experiments and dynamic studies with an excited cantilever are presented. The effect of several internal and external parameters on the mechanical properties is reviewed. The focus is on the correlation between the swelling abilities of the gels and their mechanical properties. Several results are surprising and show that the relationship is not as simple as one might expect
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
The assembly of soft colloidal particles at fluid interfaces is reviewed in the present paper, with ...
The review addresses nanomechanics and nanorheology of stimuli responsive microgels adsorbed at an i...
Stimuli responsive surface structures attract increasing attention dueto a large variety of envision...
Microgels are colloidal polymer networks with high molar mass and properties between rigid particles...
Microgel particles are highly tuneable materials that are useful for a wide range of industrial appl...
Mechanically soft colloids (microgels) adsorbed at the interface between two fluids offer superior a...
The bulk mechanical properties of soft materials have been studied widely, but it is unclear to what...
Soft particles display highly versatile properties with respect to hard colloids and even more so at...
Microgels composed of thermoresponsive polymer poly(<i>N</i>-isopropylacrylamide) (PNIPAM) are inte...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Soft matter systems consist of a large range of materials, including polymers, emulsions, foams, gra...
Karg M, Pich A, Hellweg T, et al. Nanogels and Microgels: From Model Colloids to Applications, Recen...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
The assembly of soft colloidal particles at fluid interfaces is reviewed in the present paper, with ...
The review addresses nanomechanics and nanorheology of stimuli responsive microgels adsorbed at an i...
Stimuli responsive surface structures attract increasing attention dueto a large variety of envision...
Microgels are colloidal polymer networks with high molar mass and properties between rigid particles...
Microgel particles are highly tuneable materials that are useful for a wide range of industrial appl...
Mechanically soft colloids (microgels) adsorbed at the interface between two fluids offer superior a...
The bulk mechanical properties of soft materials have been studied widely, but it is unclear to what...
Soft particles display highly versatile properties with respect to hard colloids and even more so at...
Microgels composed of thermoresponsive polymer poly(<i>N</i>-isopropylacrylamide) (PNIPAM) are inte...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Soft matter systems consist of a large range of materials, including polymers, emulsions, foams, gra...
Karg M, Pich A, Hellweg T, et al. Nanogels and Microgels: From Model Colloids to Applications, Recen...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
The assembly of soft colloidal particles at fluid interfaces is reviewed in the present paper, with ...