In the present article the swelling behavior of copolymer microgel particles made of poly(N-isopropylacrylamide)-co-vinylacetic acid using dynamic light scattering (DLS), neutron scattering, and in situ atomic force microscopy (AFM) for various copolymerized amounts of vinylacetic acid (VA) (up to 2.5 mol%) under slightly acidic conditions is studied. The transition temperature of these microgel particles is found to be ≈32.5 ± 1 °C, independent of the VA content. Microgel particles adsorbed onto a solid substrate display a similar volume phase transition as their dissolved counterparts. However, their swelling capacity is reduced by approximately one order of magnitude compared to the bulk value. Nevertheless, the observed effect still is ...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Kratz K, Hellweg T, Eimer W. Structural changes in PNIPAM microgel particles as seen by SANS, DLS, a...
ABSTRACT: Monodispersed poly(N-isopropylacrylamide) (PNIPAM) nanoparticles, with hydrodynamic radius...
In the present article the swelling behavior of copolymer microgel particles made of poly(N-isopropy...
Hoefl S, Zitzler L, Hellweg T, Herminghaus S, Mugele F. Volume phase transition of "smart" microgels...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Kratz K, Hellweg T, Eimer W. Structural changes in PNIPAM microgel particles as seen by SANS, DLS, a...
ABSTRACT: Monodispersed poly(N-isopropylacrylamide) (PNIPAM) nanoparticles, with hydrodynamic radius...
In the present article the swelling behavior of copolymer microgel particles made of poly(N-isopropy...
Hoefl S, Zitzler L, Hellweg T, Herminghaus S, Mugele F. Volume phase transition of "smart" microgels...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Characterization of switchable microgels is a major task in drug delivery science. The study of soft...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Sustained drug delivery requires the use of multi-functional devices with enhanced properties, inclu...
Kratz K, Hellweg T, Eimer W. Structural changes in PNIPAM microgel particles as seen by SANS, DLS, a...
ABSTRACT: Monodispersed poly(N-isopropylacrylamide) (PNIPAM) nanoparticles, with hydrodynamic radius...