Monodisperse thermosensitive dumbbell shaped core shell microgels are fabricated, which consist of a polystyrene core with a cross linked poly N isopropylacrylamide shell. The morphology of the microgels was investigated through cryogenic transmission electron microscopy and depolarized dynamic light scattering. The effective volume fraction and aspect ratio of the system could be adjusted through the swelling of the thermosensitive shell. We observe a phase transition of the microgels to an ordered, crystal like state, which is apparent through Bragg reflections in the visible range. These observations are further supported by rheological measurements where the shear melting of the crystal phase is clearly detecte
Temperature-responsive poly(N-isopropylacrylamide) microgels crosslinked with a new hydrophobic chem...
Poly ethylene glycol (PEG) based microgels were synthesized and investigated. The PEG microgel has t...
Karg M, Wellert S, Pastoriza-Santos I, Lapp A, Liz-Marzan LM, Hellweg T. Thermoresponsive core-shell...
Monodisperse thermosensitive dumbbell shaped core shell microgels are fabricated, which consist of a...
Prolate model colloids with defined properties can be obtained by the stretching of spherical polyme...
Thermosensitive hollow Janus dumbbells, consisting of two partially fused hollow poly N isopropylac...
We review recent work done on thermosensitive core shell particles that consist of a solid core onto...
Hybrid anisotropic microgels were synthesised using mesoporous silica as core particles. By finely c...
Herein we report the synthesis of biocompatible stimuli-responsive core–shell microgels consisting o...
In this paper, well-defined temperature- and pH-sensitive core-shell microgels were synthesized by g...
The development of soft anisotropic building blocks is of great interest for various applications in...
The aim of the present study is the preparation and characterization of microgel particles which are...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
FDA approved Hydroxypropylcellulose (HPC) polymer can be cross-linked to form microgel nanoparticles...
In the present article the swelling behavior of copolymer microgel particles made of poly(N-isopropy...
Temperature-responsive poly(N-isopropylacrylamide) microgels crosslinked with a new hydrophobic chem...
Poly ethylene glycol (PEG) based microgels were synthesized and investigated. The PEG microgel has t...
Karg M, Wellert S, Pastoriza-Santos I, Lapp A, Liz-Marzan LM, Hellweg T. Thermoresponsive core-shell...
Monodisperse thermosensitive dumbbell shaped core shell microgels are fabricated, which consist of a...
Prolate model colloids with defined properties can be obtained by the stretching of spherical polyme...
Thermosensitive hollow Janus dumbbells, consisting of two partially fused hollow poly N isopropylac...
We review recent work done on thermosensitive core shell particles that consist of a solid core onto...
Hybrid anisotropic microgels were synthesised using mesoporous silica as core particles. By finely c...
Herein we report the synthesis of biocompatible stimuli-responsive core–shell microgels consisting o...
In this paper, well-defined temperature- and pH-sensitive core-shell microgels were synthesized by g...
The development of soft anisotropic building blocks is of great interest for various applications in...
The aim of the present study is the preparation and characterization of microgel particles which are...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
FDA approved Hydroxypropylcellulose (HPC) polymer can be cross-linked to form microgel nanoparticles...
In the present article the swelling behavior of copolymer microgel particles made of poly(N-isopropy...
Temperature-responsive poly(N-isopropylacrylamide) microgels crosslinked with a new hydrophobic chem...
Poly ethylene glycol (PEG) based microgels were synthesized and investigated. The PEG microgel has t...
Karg M, Wellert S, Pastoriza-Santos I, Lapp A, Liz-Marzan LM, Hellweg T. Thermoresponsive core-shell...