English

Acid-induced gelation of carboxymethylcellulose solutions

Soft Condensed Matter 2024-01-25 v2 Materials Science Applied Physics

Abstract

The present work offers a comprehensive description of the acid-induced gelation of carboxymethylcellulose (CMC), a water-soluble derivative of cellulose broadly used in numerous applications ranging from food packaging to biomedical engineering. Linear viscoelastic properties measured at various pH and CMC contents allow us to build a sol-gel phase diagram, and show that CMC gels exhibit broad power-law viscoelastic spectra that can be rescaled onto a master curve following a time-composition superposition principle. These results demonstrate the microstructural self-similarity of CMC gels, and inspire a mean-field model based on hydrophobic inter-chain association that accounts for the sol-gel boundary over the entire range of CMC content under study. Neutron scattering experiments further confirm this picture and suggest that CMC gels comprise a fibrous network crosslinked by aggregates. Finally, low-field NMR measurements offer an original signature of acid-induced gelation from the solvent perspective. Altogether, these results open avenues for precise manipulation and control of CMC-based hydrogels.

Keywords

Cite

@article{arxiv.2311.06410,
  title  = {Acid-induced gelation of carboxymethylcellulose solutions},
  author = {Gauthier Legrand and Guilhem P. Baeza and Matteo Peyla and Lionel Porcar and Carlos Fernández-de-Alba and Sébastien Manneville and Thibaut Divoux},
  journal= {arXiv preprint arXiv:2311.06410},
  year   = {2024}
}

Comments

7 pages, 4 figures and 4 figures as SI