A novel strategy utilizing graphene oxide/functionalized carbon nanotube/nanosilica sheet for nanomaterial incorporation in cement paste

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초록

This study addresses the limitations of conventional methods in incorporating nanomaterials, including prolonged dispersion times and handling challenges in construction field applications, by developing graphene oxide/functionalized carbon nanotube/nanosilica (GCS) sheets. The GCS sheet, as a portable sheet form of a nanomaterial composite, achieves high nanomaterial dispersibility with only 1 min of sonication. The dispersion efficiency of the GCS sheets was evaluated using UV–vis spectroscopy, zeta potential measurements, and transmission electron microscopy, and the impact on material properties was assessed using compressive strength tests. The hydration processes were investigated using X-ray diffraction and 29Si nuclear magnetic resonance, and the nanomaterial dispersion within the cement matrix was studied using synchrotron X-ray nanoimaging. The GCS sheet facilitated more effective nanosilica dispersion on the graphene oxide plane compared to the powder form, achieving optimal dispersion in 1 min. This resulted in enhanced compressive strength, increased polymerization of calcium silicate hydrates, and a more elongated pore structure owing to the reduced aggregation of the GCS composites.

키워드

Cement pasteFunctionalized carbon nanotubeGraphene oxideNanosilicaPore structureC-S-HMECHANICAL-PROPERTIESOXIDEHYDRATIONREHYDRATIONDISPERSIONSTRENGTHMICROSTRUCTURESILICA
제목
A novel strategy utilizing graphene oxide/functionalized carbon nanotube/nanosilica sheet for nanomaterial incorporation in cement paste
저자
Suh, HeongwonKoo, DoheonSon, Dong-HeePark, JinKim, SooheonBae, Baek-IlChoi, Chang-SikSo, HongyunBae, Sungchul
DOI
10.1016/j.cemconcomp.2024.105918
발행일
2025-03
유형
Article
저널명
Cement and Concrete Composites
157
페이지
1 ~ 19