Hybrid Graphenene Oxide/Cellulose Nanofillers to Enhance Mechanical and Barrier Properties of Chitosan-Based Composites
Articolo
Data di Pubblicazione:
2022
Abstract:
Chitosan-based hybrid nanocomposites, containing cellulose nanocrystals (CNCs),
graphene oxide (GO), and borate as crosslinking agents, were successfully prepared
by solution-casting technique. The synergistic effect of the two fillers, and the role of the
cross-linker, in enhancing the structural and functional properties of the chitosan polymer,
was investigated. XPS results confirm the chemical interaction between borate ions and
hydroxyl groups of chitosan, GO, and CNCs. The morphological characterization shows
that the GO sheets are oriented along the casting surface, whereas the CNC particles are
homogenously distributed in the sample. Results of tensile tests reveal that the presence of
graphene oxide enhances the elastic modulus, tensile strength, elongation at break, and
toughness of chitosan, while cellulose and borate induce an increase in the elastic modulus
and stress at the yield point. In particular, the borate-crosslinked chitosan-based sample
containing 0.5 wt% of GO and 0.5 wt% of CNCs shows an elongation at a break value of
30.2% and a toughness value of 988 J*m-3 which are improved by 124% and 216%,
respectively, compared with the pristine chitosan. Moreover, the water permeability results
show that the presence of graphene oxide slightly increases the water barrier properties,
whereas the borate and cellulose nanocrystals significantly reduce the water vapor
permeability of the polymer by about 50%. Thus, by modulating the content of the two
reinforcing fillers, it is possible to obtain chitosan-based nanocomposites with enhanced
mechanical and water barrier properties which can be potentially used in various
applications such as food and electronic packaging.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
chitosan; graphene oxide; cellulose nanocrystals; hybrid nanofiller; mechanical properties
Elenco autori:
Santillo, Chiara; Kaciulis, Saulius; Lavorgna, Marino; Gentile, Gennaro; Buonocore, GIOVANNA GIULIANA; Verdolotti, Letizia
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