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High-Performance Graphene-Based Cementitious Composites
被引:92
作者:
Krystek, Malgorzata
[1
,2
]
Pakulski, Dawid
[2
,3
,4
]
Patroniak, Violetta
[3
]
Gorski, Marcin
[1
]
Szojda, Leszek
[1
]
Ciesielski, Artur
[2
,4
]
Samori, Paolo
[2
]
机构:
[1] Silesian Tech Univ, Fac Civil Engn, Dept Struct Engn, Akad 5, PL-44100 Gliwice, Poland
[2] Univ Strasbourg, CNRS, ISIS, 8 Allee Gaspard Monge, F-67000 Strasbourg, France
[3] Adam Mickiewicz Univ, Fac Chem, Umultowska 89b, PL-61614 Poznan, Poland
[4] Adam Mickiewicz Univ, Ctr Adv Technol, Umultowska 89c, PL-61614 Poznan, Poland
关键词:
consistency;
electrochemically exfoliated graphene;
mechanical properties;
Portland cement;
structural characterization;
CARBON NANOTUBES;
MECHANICAL-PROPERTIES;
OXIDE;
MICROSTRUCTURE;
DISPERSION;
EXFOLIATION;
BEHAVIOR;
WATER;
NANOSHEETS;
HYDRATION;
D O I:
10.1002/advs.201801195
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
This study reports on the development of a cementitious composite incorporating electrochemically exfoliated graphene (EEG). This hybrid functional material features significantly enhanced microstructure and mechanical properties, as well as unaffected workability; thus, it outperforms previously reported cementitious composites containing graphene derivatives. The manufacturing of the composite relies on a simple and efficient method that enables the uniform dispersion of EEG within cement matrix in the absence of surfactants. Different from graphene oxide, EEG is found to not agglomerate in cement alkaline environment, thereby not affecting the fluidity of cementitious composites. The addition of 0.05 wt% graphene content to ordinary Portland cement results in an increase up to 79%, 8%, and 9% for the tensile strength, compressive strength, and Young's modulus, respectively. Remarkably, it is found that the addition of EEG promotes the hydration reaction of both alite and belite, thus leading to the formation of a large fraction of 3CaO center dot 2SiO(2)center dot 3H(2)O(C-S-H) phase. These findings represent a major step forward toward the practical application of nanomaterials in civil engineering.
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