The volume phase transition of microgels is one of the most paradigmatic examples of stimuli-responsiveness, enabling a collapse from a highly swollen microgel state into a densely coiled state by an external stimulus. Although well characterized in bulk, it remains unclear how the phase transition is affected by the presence of a confining interface. Here, we demonstrate that the temperature-induced volume phase transition of poly(N-isopropylacrylamide) microgels, conventionally considered an intrinsic molecular property of the polymer, is in fact largely suppressed when the microgel is adsorbed to an air/liquid interface. We further observe a hysteresis in the core morphology and interfacial pressure between heating and cooling cycles. Ou...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
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...
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...
\u3cp\u3eThe volume phase transition of microgels is one of the most paradigmatic examples of stimul...
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...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
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...
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...
\u3cp\u3eThe volume phase transition of microgels is one of the most paradigmatic examples of stimul...
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...
Thermo-responsive microgel particles can exhibit a drastic volume shrinkage upon increasing the solv...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
Microgels, consisting of a swollen polymer network, exhibit a more complex self-assembly behavior co...
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...