Compression and reswelling of microgel particles after an osmotic shock

Publication date

2017-09-01

Authors

Sleeboom, Jelle F.
Voudouris, Panayiotis
Punter, Melle T. J. J. M.
Aangenendt, Frank J.
Florea, Daniel
van der Schoot, PaulISNI 0000000389454246
Wyss, Hans M.

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Supervisors

Document Type

Article
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Abstract

We use dedicated microfluidic devices to expose soft hydrogel particles to a rapid change in the externally applied osmotic pressure and observe a non-monotonic response: After an initial rapid compression the particle slowly reswells to approximately its original size. Using a simple phenomenological and a more elaborate poroelastic model, we extract important material properties from a single microfluidic experiment, including the compressive modulus, the gel permeability and the diffusivity of the osmolyte inside the gel. We expect our approach to be relevant to applications such as controlled release, chromatography, and responsive materials.

Keywords

Diffusion, Flows in porous media, Osmotic interactions, Hydrogels, Polymer gels, Soft colloids, Mechanical testing

Citation

Sleeboom, J F, Voudouris, P, Punter, M T J J M, Aangenendt, F J, Florea, D, Schoot, P V D & Wyss, H M 2017, 'Compression and reswelling of microgel particles after an osmotic shock', Physical Review Letters, vol. 119, no. 9, 098001 . https://doi.org/10.1103/PhysRevLett.119.098001