A series of novel temperature-sensitive microgels were prepared through precipitation polymerization using MPTMS as the comonomer as well as the crosslinker. APS acted as the initiator to initiate the radical copolymerization of NIPAAm and MPTMS, at the same time, the acid environment resulting from the decomposition of APS catalyzed the hydrolysis/condensation of the siloxane groups to generate crosslinking points. The experimental results revealed that the microgels exhibited temperature sensitivity and the phase transition temperature was approximately 31 °C. An increase of SDS concentration or a decrease of MPTMS content resulted in a reduction of the final hydrodynamic diameters of the microgels
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Degradable and thermosensitive microgels were successfully prepared via simultaneous quaternization ...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
Temperature-responsive poly(N-isopropylacrylamide) microgels crosslinked with a new hydrophobic chem...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Polymeric microgels were synthesized in by chemically crosslinking hydroxypropylcellulose (HPC) chai...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Monodispersed microgels composed of poly-acrylic acid (PAAc) and poly(N-isopropylacrylamide) (PNIPAM...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
A group of crosslinked poly(N-isopropylacrylamide-co-acrylic acid) (P(NIPAM-co-AAc)) microgels with ...
Microgels are nanoparticles suspended in solution and comprised of crosslinked polymer chains. Due t...
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Degradable and thermosensitive microgels were successfully prepared via simultaneous quaternization ...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
A series of novel temperature-sensitive microgels were prepared through precipitation polymerization...
Temperature-responsive poly(N-isopropylacrylamide) microgels crosslinked with a new hydrophobic chem...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Polymeric microgels were synthesized in by chemically crosslinking hydroxypropylcellulose (HPC) chai...
Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive...
Monodispersed microgels composed of poly-acrylic acid (PAAc) and poly(N-isopropylacrylamide) (PNIPAM...
Microgels are polymer-based particles which are able to change size and shape during volume phase tr...
A group of crosslinked poly(N-isopropylacrylamide-co-acrylic acid) (P(NIPAM-co-AAc)) microgels with ...
Microgels are nanoparticles suspended in solution and comprised of crosslinked polymer chains. Due t...
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Stimuli-responsive microgels have recently attracted great attention in fundamental research as thei...
Degradable and thermosensitive microgels were successfully prepared via simultaneous quaternization ...