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Synthesis of highly-dispersed graphene oxide nanoribbons–functionalized carbon nanotubes–graphene oxide (GNFG) complex and its application in enhancing the mechanical properties of cementitious compositesopen access

Authors
Li, PeiqiLiu, JunxingHer, SungwunZal Nezhad, ErfanLim, SeungminBae, Sung Chul
Issue Date
Jul-2021
Publisher
MDPI AG
Keywords
Cement paste; Functionalized carbon nanotubes; Graphene oxide; Graphene oxide nanoribbons; Mechanical properties
Citation
Nanomaterials, v.11, no.7, pp.1 - 24
Indexed
SCIE
SCOPUS
Journal Title
Nanomaterials
Volume
11
Number
7
Start Page
1
End Page
24
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/141551
DOI
10.3390/nano11071669
ISSN
2079-4991
Abstract
In this study, a graphene oxide nanoribbons–functionalized carbon nanotubes–graphene oxide (GNFG) complex was hydrothermally synthesized as a nanomaterial for reinforcing cementi-tious composites, using a modified Hummers’ method. Three types of components existed in the GNFG: Type I, the functionalized carbon nanotubes–graphene oxide nanoribbons (FCNTs–GNR); and types II and III are graphene oxide (GO) and functionalized carbon nanotubes (FCNTs), re-spectively, which exist independently. The dispersivity of GNFG and its effects on the mechanical properties, hydration process, and microstructures of cement pastes were evaluated, and the results were compared with those using cement pastes incorporating other typical carbon nanomaterials. The results demonstrated that dispersion of GNFG in aqueous solutions was superior to that of the CNTs, FCNTs, and GO/FCNTs mixture. Furthermore, the highly-dispersed GNFG (0.05 wt.%) improved the mechanical properties of the cement paste after 28 days of hydration and promoted the hydration of cement compared to CNTs, GO, and GO/FCNTs mixture (0.05 wt.%). The results in this study validated the feasibility of using GNFG with enhanced dispersion as a new nano-reinforcing agent for various cementitious systems.
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