Green Carbon Nanostructures for Functional Composite Materials

Экологичные углеродные наноструктуры для функциональных композиционных материалов
Ana Barra, Cláudia Nunes, Eduardo Ruiz‐Hitzky, Paula Ferreira
2022-02-06

biomass-derived carbonsclay-supported carbon nanostructuresgreen reduction of graphene oxidepolymer compositesreduced graphene oxide
Carbon nanostructures are widely used as fillers to tailor the mechanical, thermal, barrier, and electrical properties of polymeric matrices employed for a wide range of applications. Reduced graphene oxide (rGO), a carbon nanostructure from the graphene derivatives family, has been incorporated in composite materials due to its remarkable electrical conductivity, mechanical strength capacity, and low cost. Graphene oxide (GO) is typically synthesized by the improved Hummers' method and then chemically reduced to obtain rGO. However, the chemical reduction commonly uses toxic reducing agents, such as hydrazine, being environmentally unfriendly and limiting the final application of composites. Therefore, green chemical reducing agents and synthesis methods of carbon nanostructures should be employed. This paper reviews the state of the art regarding the green chemical reduction of graphene oxide reported in the last 3 years. Moreover, alternative graphitic nanostructures, such as carbons derived from biomass and carbon nanostructures supported on clays, are pointed as eco-friendly and sustainable carbonaceous additives to engineering polymer properties in composites. Finally, the application of these carbon nanostructures in polymer composites is briefly overviewed.
1
Biomass-derived carbons and clay-supported carbon nanostructures are identified as sustainable alternatives for modifying engineering polymer properties.
2
Conventional graphene oxide reduction commonly relies on toxic agents such as hydrazine, creating environmental concerns and potentially limiting composite applications.
3
Reduced graphene oxide is used as a polymer-composite filler to improve electrical conductivity, mechanical strength, thermal behavior, and barrier properties.
4
The paper briefly overviews applications of these greener carbon nanostructures in polymer composites.
5
The review surveys green chemical reduction methods for graphene oxide reported during the last three years.

Green carbon nanostructures, including reduced graphene oxide, biomass-derived carbons, and clay-supported carbon nanostructures, for use in polymer composites

Eco-friendly chemical reduction and sustainable synthesis of carbon nanostructures, and their effects on the mechanical, thermal, barrier, and electrical properties of polymer composites

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2022-02-06
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Authors
Ana Barra
Cláudia Nunes
Eduardo Ruiz‐Hitzky
Paula Ferreira
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