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Filler size effect in an attractive fibrillated network: a structural and rheological perspective.
Calabrese, Vincenzo; da Silva, Marcelo A; Porcar, Lionel; Bryant, Saffron J; Hossain, Kazi M Zakir; Scott, Janet L; Edler, Karen J.
Afiliação
  • Calabrese V; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk.
  • da Silva MA; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk.
  • Porcar L; Institut Laue-Langevin, 71 avenue des Martyrs, CS 20156, 38042 Grenoble cedex 9, France.
  • Bryant SJ; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk.
  • Hossain KMZ; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk.
  • Scott JL; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk and Centre for Sustainable Chemical Technologies, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
  • Edler KJ; Department of Chemistry, University of Bath, Claverton Down, Bath, BA2 7AY, UK. vc355@bath.ac.uk 355calabrese@gmail.com k.edler@bath.ac.uk.
Soft Matter ; 16(13): 3303-3310, 2020 Apr 01.
Article em En | MEDLINE | ID: mdl-32173723
ABSTRACT
The effect of the filler size on the structural and mechanical properties of an attractive fibrillated network composed of oxidised cellulose nanofibrils (OCNF) in water was investigated. Silica nanoparticles with a diameter of ca. 5 nm (SiNp5) and and ca. 158 nm (SiNp158) were chosen as non-interacting fillers of the OCNF network. These filler sizes were chosen, respectively, to have a particle size which was either similar to that of the network mesh size or much larger than it. Contrast matched small angle neutron scattering (SANS) experiments revealed that the presence of the fillers (SiNp5 and SiNp158) did not perturb the structural properties of the OCNF network at the nanometer scale. However, the filler size difference strongly affected the mechanical properties of the hydrogel upon large amplitude oscillatory shear. The presence of the smaller filler, SiNp5, preserved the mechanical properties of the hydrogels, while the larger filler, SiNp158, allowed a smoother breakage of the network and low network recoverability after breakage. This study showed that the filler-to-mesh size ratio, for non-interacting fillers, is pivotal for tailoring the non-linear mechanical properties of the gel, such as yielding and flow.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Soft Matter Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Soft Matter Ano de publicação: 2020 Tipo de documento: Article