Due to the ability of microgels to rapidly contract and expand in response to external stimuli, assemblies of interconnected microgels are promising for actuation applications, e.g., as contracting fibers for artificial muscles. Among the properties determining the suitability of microgel assemblies for actuation are mechanical parameters such as bending stiffness and mobility. Here, we study the properties of linear, one-dimensional chains of poly(N-vinylcaprolactam) microgels dispersed in water. They were fabricated by utilizing wrinkled surfaces as templates and UV-cross-linking the microgels. We image the shapes of the chains on surfaces and in solution using atomic force microscopy (AFM) and fluorescence microscopy, respectively. In so...
Microgels are deformable polymer-networks with conspicuous properties. Their surface- activity assoc...
The translational mobility of linear macromolecules of poly(ethylene glycol) (PEG) within a weakly c...
We report on the fabrication of biologically-inspired ‘‘smart’’ surfaces using hybrid architectures ...
Due to the ability of microgels to rapidly contract and expand in response to external stimuli, asse...
The fabrication and characterization of surface-anchored hydrogel microstructures are described. The...
Microgels are soft deformable colloids that can be packed by external compression. Such packing tran...
Hydrogels are water-swellable cross-linked polymeric networks that are capable of incorporating a va...
We present a systematic study of self-cross-linked microgels formed by precipitation polymerization ...
<div><p>We present a systematic study of self-cross-linked microgels formed by precipitation polymer...
The light scattering methods were used for characterization of properties and formation of networks ...
Active materials that can adapt to dynamic environment have attracted growing attention in various f...
Hollow microgels are fascinating model systems at the crossover between polymer vesicles, emulsions,...
In this study the role of passive mechanism for deformation of neutrophils, namely the effect of mec...
Here we show that microgels trapped at a solid wall can issue liquid flow and transport over distanc...
Microgels are solvent swollen, cross-linked polymer macromolecules of micro or nanoscale dimensions....
Microgels are deformable polymer-networks with conspicuous properties. Their surface- activity assoc...
The translational mobility of linear macromolecules of poly(ethylene glycol) (PEG) within a weakly c...
We report on the fabrication of biologically-inspired ‘‘smart’’ surfaces using hybrid architectures ...
Due to the ability of microgels to rapidly contract and expand in response to external stimuli, asse...
The fabrication and characterization of surface-anchored hydrogel microstructures are described. The...
Microgels are soft deformable colloids that can be packed by external compression. Such packing tran...
Hydrogels are water-swellable cross-linked polymeric networks that are capable of incorporating a va...
We present a systematic study of self-cross-linked microgels formed by precipitation polymerization ...
<div><p>We present a systematic study of self-cross-linked microgels formed by precipitation polymer...
The light scattering methods were used for characterization of properties and formation of networks ...
Active materials that can adapt to dynamic environment have attracted growing attention in various f...
Hollow microgels are fascinating model systems at the crossover between polymer vesicles, emulsions,...
In this study the role of passive mechanism for deformation of neutrophils, namely the effect of mec...
Here we show that microgels trapped at a solid wall can issue liquid flow and transport over distanc...
Microgels are solvent swollen, cross-linked polymer macromolecules of micro or nanoscale dimensions....
Microgels are deformable polymer-networks with conspicuous properties. Their surface- activity assoc...
The translational mobility of linear macromolecules of poly(ethylene glycol) (PEG) within a weakly c...
We report on the fabrication of biologically-inspired ‘‘smart’’ surfaces using hybrid architectures ...