Synthesis, properties, and applications of graphene oxide/reduced graphene oxide and their nanocomposites

Синтез, свойства и применение оксида графена/восстановленного оксида графена и их нанокомпозитов
Andrew T. Smith, Anna Marie LaChance, Songshan Zeng, Bin Liu, Luyi Sun
2019-03-01

energy storagegraphene oxidemembrane separationpolymer nanocompositesreduced graphene oxide
Thanks to their remarkable mechanical, electrical, thermal, and barrier properties, graphene-based nanocomposites have been a hot area of research in the past decade. Because of their simple top-down synthesis, graphene oxide (GO) and reduced graphene oxide (rGO) have opened new possibilities for gas barrier, membrane separation, and stimuli-response characteristics in nanocomposites. Herein, we review the synthesis techniques most commonly used to produce these graphene derivatives, discuss how synthesis affects their key material properties, and highlight some examples of nanocomposites with unique and impressive properties. We specifically highlight their performances in separation applications, stimuli-responsive materials, anti-corrosion coatings, and energy storage. Finally, we discuss the outlook and remaining challenges in the field of practical industrial-scale production and use of graphene-derivative-based polymer nanocomposites.
1
Graphene oxide and reduced graphene oxide enable nanocomposites with notable mechanical, electrical, thermal, and barrier properties.
2
Graphene-derivative nanocomposites show promising performance in separation technologies, stimuli-responsive materials, anti-corrosion coatings, and energy storage.
3
Practical industrial-scale production and deployment of graphene-derivative polymer nanocomposites remain important unresolved challenges.
4
Synthesis techniques strongly influence the key material properties and resulting performance of graphene-derivative nanocomposites.
5
Top-down synthesis of graphene oxide and reduced graphene oxide supports applications in gas barriers, membrane separation, and stimuli-responsive nanocomposites.

graphene oxide (GO), reduced graphene oxide (rGO), and their polymer nanocomposites

synthesis–structure–property relationships and application performance, including gas barrier and membrane separation, stimuli responsiveness, anti-corrosion protection, and energy storage

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Publication Date
2019-03-01
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Authors
Andrew T. Smith
Anna Marie LaChance
Songshan Zeng
Bin Liu
Luyi Sun
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