Elastic strain-hardening and shear-thickening exhibited by thermoreversible physical hydrogels based on poly(alkylene oxide)-grafted hyaluronic acid or carboxymethylcellulose

Author:

Andersson Trojer Markus12345ORCID,Andersson Mats678910ORCID,Bergenholtz Johan11121310ORCID,Gatenholm Paul61415910ORCID

Affiliation:

1. Department of Colloid Chemistry

2. Interactions in Complex Monolayers

3. Max Planck Institute of Colloids and Interfaces

4. DE-14476 Potsdam

5. Germany

6. Department of Chemistry and Chemical Engineering

7. Polymer Technology

8. Chalmers University of Technology

9. SE-41296 Göteborg

10. Sweden

11. Department of Chemistry and Molecular Biology

12. University of Gothenburg

13. SE-412 96 Göteborg

14. Biopolymer Technology

15. Wallenberg Wood Science Center, Chalmers University of Technology

Abstract

An alternative interpretation of the transient network theory is necessary to explain the evolution of the viscoelastic parameters during the temperature-dependent formation into a solid gel structure.

Funder

VINNOVA

Svenska Forskningsrådet Formas

Stiftelsen Bengt Lundqvists Minne

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference59 articles.

1. Supramolecular soft biomaterials for biomedical applications

2. Polymeric and Self Assembled Hydrogels: From Fundamentals Understanding to Applications . ed. X. J. Luh , and O. A. Scherman , 2013 [In: Monogr. Supramol. Chem., 2013; 11]

3. Viscoelastic properties of physically crosslinked networks. 1. Transient network theory

4. Encapsulation of actives for sustained release

5. Thermoresponsive microgel-based materials

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