The authors demonstrate how the size and structure of the cavity of hollow charged microgels may be controlled by varying pH and ionic strength. Hollow charged microgels based on N-isopropylacrylamide with ionizable co-monomers (itaconic acid) combine advanced structure with enhanced responsiveness to external stimuli. Structural advantages accrue from the increased surface area provided by the extra internal surface. Extreme sensitivity to pH and ionic strength due to ionizable moieties in the polymer network differentiates these soft colloidal particles from their uncharged counterparts, which sustain a hollow structure only at cross-link densities sufficiently high that stimuli sensitivity is reduced. Using small-angle neutron and light ...
Microgels are soft polymer networks with an average size between 50 nm and 5 μm, swollen by a good s...
The development of soft anisotropic building blocks is of great interest for various applications in...
Research in microgels focuses more than ever on mastering increasingly complex molecular structures ...
The authors demonstrate how the size and structure of the cavity of hollow charged microgels may be ...
We study how a cavity changes the response of hollow microgels with respect to regular ones in overc...
Mimicking the self-organization and adaptivity of living systems by synthetic mate- rials is of on-g...
Microgels are nanometer-to-micrometer-sized cross-linked polymer networks that swell when dispersed ...
Microgels are nanometer-to-micrometer-sized cross-linked polymer networks that swell when dispersed ...
A main challenge in colloid science is the development of smart delivery systems that store and prot...
Brändel T, Dirksen M, Hellweg T. Tuning the Swelling Properties of Smart Multiresponsive Core-Shell ...
Microgels are macromolecular networks swollen by the solvent they are dissolved in. They are unique...
Materials science today is a multidisciplinary effort comprising an accelerated convergence of diver...
The layer-by-layer (LbL) assembly of polyelectrolyte pairs on temperature and pH-sensitive cross-lin...
Finding new ways to tune the behavior of thermoresponsive microgels in bulk and confined at 2D liqui...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Microgels are soft polymer networks with an average size between 50 nm and 5 μm, swollen by a good s...
The development of soft anisotropic building blocks is of great interest for various applications in...
Research in microgels focuses more than ever on mastering increasingly complex molecular structures ...
The authors demonstrate how the size and structure of the cavity of hollow charged microgels may be ...
We study how a cavity changes the response of hollow microgels with respect to regular ones in overc...
Mimicking the self-organization and adaptivity of living systems by synthetic mate- rials is of on-g...
Microgels are nanometer-to-micrometer-sized cross-linked polymer networks that swell when dispersed ...
Microgels are nanometer-to-micrometer-sized cross-linked polymer networks that swell when dispersed ...
A main challenge in colloid science is the development of smart delivery systems that store and prot...
Brändel T, Dirksen M, Hellweg T. Tuning the Swelling Properties of Smart Multiresponsive Core-Shell ...
Microgels are macromolecular networks swollen by the solvent they are dissolved in. They are unique...
Materials science today is a multidisciplinary effort comprising an accelerated convergence of diver...
The layer-by-layer (LbL) assembly of polyelectrolyte pairs on temperature and pH-sensitive cross-lin...
Finding new ways to tune the behavior of thermoresponsive microgels in bulk and confined at 2D liqui...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Microgels are soft polymer networks with an average size between 50 nm and 5 μm, swollen by a good s...
The development of soft anisotropic building blocks is of great interest for various applications in...
Research in microgels focuses more than ever on mastering increasingly complex molecular structures ...