Synthesis of a Double-Network Supramolecular Hydrogel by Having One Network Catalyse the Formation of the Second

Nishant Singh, Chandan Maity, Kai Zhang, César A. Angulo-Pachón, Jan H. van Esch*, Rienk Eelkema, Beatriu Escuder

*Corresponding author for this work

Research output: Contribution to journalArticleScientificpeer-review

21 Citations (Scopus)

Abstract

Self-assembly of biomolecules catalytically controls the formation of natural supramolecular structures, giving highly ordered complex materials. Such desirable hybrid systems are very difficult to design and construct synthetically. A hybrid double-network hydrogel with a maximum storage modulus (G′max) of up to 55 kPa can be synthesized by using a self-assembled hydrogel that catalyses the formation of another kinetically arrested hydrogel network. Tuning of the catalytic efficiency of the first network allowed spatiotemporal control over the evolution of the second network and the resulting mechanical properties. The distribution of active catalytic sites was optimal for catalytic fibres prepared at the minimum gelation concentration (MGC) to give the double-network hydrogel with highest storage modulus. This approach could be very useful in preparing complex hierarchical structures with tailor-made properties.

Original languageEnglish
Pages (from-to)2018-2021
Number of pages4
JournalChemistry: A European Journal
Volume23
Issue number9
DOIs
Publication statusPublished - 10 Feb 2017

Keywords

  • catalytic hydrogelators
  • double networks
  • fibers
  • self-assembly
  • supramolecular gels

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