Thermoresponsive microgels are polymeric colloidal networks that can change their size in response to a temperature variation. This peculiar feature is driven by the nature of the solvent-polymer interactions, which triggers the so-called volume phase transition from a swollen to a collapsed state above a characteristic temperature. Recently, an advanced modelling protocol to assemble realistic, disordered microgels has been shown to reproduce experimental swelling behavior and form factors. In the original framework, the solvent was taken into account in an implicit way, condensing solvent-polymer interactions in an effective attraction between monomers. To go one step further, in this work we perform simulations of realistic microgels in ...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermoresponsive microgels find widespread use as colloidal model systems, because their temperature...
Microgels are colloidal-scale particles individually made of cross-linked polymer networks that can ...
In contrast to solid colloidal particles, microgels promptly respond to external stimuli such as th...
Microgels are soft colloids that, by virtue of their polymeric nature, can react to external stimuli...
We present computer simulations of a realistic model of microgels. Unlike the regular network framew...
Thermoresponsive microgels are soft colloids that find widespread use as model systems for soft matt...
Thermoresponsive colloidal microgels expel solvent from their interior upon crossing a threshold tem...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
Recent progress has been made in the numerical modelling of neutral microgel particles with a realis...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Microgels are three-dimensional, cross-linked polymeric networks swollen by a good solvent. Poly-N-i...
Ionic microgel particles are intriguing systems in which the properties of thermo-responsive polymer...
Microgels are complex macromolecules. These colloid-sized polymer networks possess internal degrees ...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermoresponsive microgels find widespread use as colloidal model systems, because their temperature...
Microgels are colloidal-scale particles individually made of cross-linked polymer networks that can ...
In contrast to solid colloidal particles, microgels promptly respond to external stimuli such as th...
Microgels are soft colloids that, by virtue of their polymeric nature, can react to external stimuli...
We present computer simulations of a realistic model of microgels. Unlike the regular network framew...
Thermoresponsive microgels are soft colloids that find widespread use as model systems for soft matt...
Thermoresponsive colloidal microgels expel solvent from their interior upon crossing a threshold tem...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
Recent progress has been made in the numerical modelling of neutral microgel particles with a realis...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Microgels are three-dimensional, cross-linked polymeric networks swollen by a good solvent. Poly-N-i...
Ionic microgel particles are intriguing systems in which the properties of thermo-responsive polymer...
Microgels are complex macromolecules. These colloid-sized polymer networks possess internal degrees ...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Thermoresponsive microgels find widespread use as colloidal model systems, because their temperature...