TY - JOUR
T1 - Reduced Graphene Oxide-Poly (Ionic Liquid) Composite Films of High Mechanical Performance
AU - Chang, Jian
AU - Zhou, Xianjing
AU - Zhao, Qiang
AU - Cao, Wei
AU - Zhang, Miao
AU - Yuan, Jiayin
N1 - Publisher Copyright:
© Copyright © 2021 Chang, Zhou, Zhao, Cao, Zhang and Yuan.
PY - 2021/4/8
Y1 - 2021/4/8
N2 - Graphene and its derivatives are a classical group of two-dimensional (2D) building blocks possessing excellent mechanical and/or electrical properties in favor of preparing flexible electronic devices. Natural materials, such as nacre, provide inspiration and an exciting guideline for assembling 2D nanosheets into functional nanocomposites. In this context, despite recent advance, methods to assemble graphene-derived nanosheets into nanocomposites with the integrated enhancement of mechanical properties and electrical conductivity are eagerly pursued. Here, a rational design has been proposed and demonstrated, which utilizes synergistic supramolecular interactions between a polymeric additive and reduced graphene-oxide nanosheets to fabricate exceptional, integrated, strong, and tough nanocomposite films with high electrical conductivity. Such materials can be applied in areas such as, aerospace, artificial muscle, tissue engineering, and flexible electronics.
AB - Graphene and its derivatives are a classical group of two-dimensional (2D) building blocks possessing excellent mechanical and/or electrical properties in favor of preparing flexible electronic devices. Natural materials, such as nacre, provide inspiration and an exciting guideline for assembling 2D nanosheets into functional nanocomposites. In this context, despite recent advance, methods to assemble graphene-derived nanosheets into nanocomposites with the integrated enhancement of mechanical properties and electrical conductivity are eagerly pursued. Here, a rational design has been proposed and demonstrated, which utilizes synergistic supramolecular interactions between a polymeric additive and reduced graphene-oxide nanosheets to fabricate exceptional, integrated, strong, and tough nanocomposite films with high electrical conductivity. Such materials can be applied in areas such as, aerospace, artificial muscle, tissue engineering, and flexible electronics.
KW - cation-π interaction
KW - high mechanical performance
KW - poly (ionic liquid)
KW - reduced graphene oxide
KW - π-π interaction
UR - https://www.scopus.com/pages/publications/85104652503
U2 - 10.3389/fmats.2021.635987
DO - 10.3389/fmats.2021.635987
M3 - 文章
AN - SCOPUS:85104652503
SN - 2296-8016
VL - 8
JO - Frontiers in Materials
JF - Frontiers in Materials
M1 - 635987
ER -