Nanostructure of PEGDA-PEG hydrogel membranes and how it controls their permeability

Fuente: arXiv
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Main Authors: de Chateauneuf-Randon, Sixtine, Eddine, Malak Alaa, Bresson, Bruno, Salez, Thomas, Prévost, Sylvain, Belbekhouche, S., Merland, Théo, Lorthioir, Cédric, Coeur, Clémence Le, Monteux, C.
Format: Preprint
Published: 2026
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author de Chateauneuf-Randon, Sixtine
Eddine, Malak Alaa
Bresson, Bruno
Salez, Thomas
Prévost, Sylvain
Belbekhouche, S.
Merland, Théo
Lorthioir, Cédric
Coeur, Clémence Le
Monteux, C.
author_facet de Chateauneuf-Randon, Sixtine
Eddine, Malak Alaa
Bresson, Bruno
Salez, Thomas
Prévost, Sylvain
Belbekhouche, S.
Merland, Théo
Lorthioir, Cédric
Coeur, Clémence Le
Monteux, C.
contents The spacial heterogeneity of hydrogels composed of PEGDA and added polymer chains is expected to play a crucial role on their transport properties which can be exploited in filtration or tissue engineering. However little is known about the arrangement of the polymer chains in the matrix and the length scales of these heterogeneities. Here we combine solid-state NMR and Small Angle Neutron Scattering to unravel the structure and dynamics of PEGDA hydrogels containing added PEG chains of various concentrations. Our results show that the samples present heterogeneities in both the PEGDA and PEG concentrations and suggest that the PEG chains entangle with the PEGDA network. When plotting the sample permeability, K, as a function the specific surface of the PEGDA heterogeneities we obtain a master curve, showing that the heterogeneity of the PEGDA matrix controls the permeability of the sample. Moreover the scaling K ___ V/S suggests a structure composed of facetted PEGDA/PEG heterogeneities separated by a network of aqueous thin and flattened films in which the water can permeate.
format Preprint
id arxiv_https___arxiv_org_abs_2605_11719
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Nanostructure of PEGDA-PEG hydrogel membranes and how it controls their permeability
de Chateauneuf-Randon, Sixtine
Eddine, Malak Alaa
Bresson, Bruno
Salez, Thomas
Prévost, Sylvain
Belbekhouche, S.
Merland, Théo
Lorthioir, Cédric
Coeur, Clémence Le
Monteux, C.
Soft Condensed Matter
Chemical Physics
The spacial heterogeneity of hydrogels composed of PEGDA and added polymer chains is expected to play a crucial role on their transport properties which can be exploited in filtration or tissue engineering. However little is known about the arrangement of the polymer chains in the matrix and the length scales of these heterogeneities. Here we combine solid-state NMR and Small Angle Neutron Scattering to unravel the structure and dynamics of PEGDA hydrogels containing added PEG chains of various concentrations. Our results show that the samples present heterogeneities in both the PEGDA and PEG concentrations and suggest that the PEG chains entangle with the PEGDA network. When plotting the sample permeability, K, as a function the specific surface of the PEGDA heterogeneities we obtain a master curve, showing that the heterogeneity of the PEGDA matrix controls the permeability of the sample. Moreover the scaling K ___ V/S suggests a structure composed of facetted PEGDA/PEG heterogeneities separated by a network of aqueous thin and flattened films in which the water can permeate.
title Nanostructure of PEGDA-PEG hydrogel membranes and how it controls their permeability
topic Soft Condensed Matter
Chemical Physics
url https://arxiv.org/abs/2605.11719