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Updated: Jan 13, 2026

Alternating Magnetic Field-Responsive Hybrid Gelatin Microgels for Controlled Drug Release
Published on: February 13, 2016
Electrostatic interactions reshape the internal architecture of ionic microgels
Priti S Mohanty1, Chi Zhang2, Elisa Ballin3
1Department of Physics, University of Fribourg, Chemin du Musée 3, Fribourg, 1700, Switzerland; School of Chemical Engineering and School of Biotechnology, Kalinga Institute of Industrial Technology (KIIT) Deemed to be University, Bhubaneswar, 751024, Odisha, India.
Abstract:
Incorporating ionic co-monomers into polymer microgels can alter their swelling behavior and introduce pH-responsiveness; however, their effect on the internal microgel structure remains poorly understood. Here we present a comprehensive study of poly(N-isopropylacrylamide-co-acrylic acid) microgels, revealing that the incorporation of ionic groups significantly alters their internal architecture. Using dynamic and static light scattering combined with small-angle X-ray scattering, we observe pronounced differences in form factors and swelling behavior between neutral and ionic microgels. These findings can be rationalized by monomer-resolved simulations, which reproduce the experimental form factors only when charge-induced alterations to the network architecture are explicitly accounted for during in silico synthesis. Our results demonstrate that electrostatic interactions modulate not only the swelling behavior but also the internal monomer density profile, highlighting the need to integrate and extend current modeling approaches for charged microgels.
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