Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solvent temperature. Recently we found that the spreading of poly(N-isopropylacrylamide) (PNiPAm) microgels at a liquid interface under the influence of surface tension hinders the temperature-induced volume phase transition. In addition, we observed a hysteresis behavior upon temperature cycling, i.e. a different evolution in microgel size and shape depending on whether the microgel was initially adsorbed to the interface in expanded or collapsed state. Here, we model the volume phase transition of such microgels at an air/water interface by monomer-resolved Brownian dynamics simulations and compare the observed behavior with experiments. We rep...
In the traditional view of temperature-driven volume phase transitions in PNIPAM-based microgel solu...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
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...
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...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
\u3cp\u3eThe volume phase transition of microgels is one of the most paradigmatic examples of stimul...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
In the traditional view of temperature-driven volume phase transitions in PNIPAM-based microgel solu...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
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...
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...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
\u3cp\u3eThe volume phase transition of microgels is one of the most paradigmatic examples of stimul...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-respons...
Microgels are three-dimensional, cross-linked polymer networks of colloidal size which are dispersed...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
In the traditional view of temperature-driven volume phase transitions in PNIPAM-based microgel solu...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...