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High-performance cement with minimal graphene content enabled by improved dispersion through cellulose nanofibers
- Park, Jae Seo;
- Kim, Ki Yun;
- Kim, Line;
- Jung, Gayoung;
- Kim, Ji Yun;
- ... Yang, Seung Jae;
- 외 2명
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0초록
Incorporating nanotechnology into cement composites significantly improves mechanical properties such as strength, toughness, and durability. Graphene, with high tensile strength and large surface area, shows great promise as a nanofiller, but its hydrophobicity complicates its dispersion in cement matrices. This study used a graphene-cellulose nanofiber (G@CNF) hybrid filler to ensure a highly uniform dispersion within the cement microstructure. The hybrid filler acts as a bridge and efficiently fills voids within the matrix. The planar structure of graphene also provides nucleation sites for hydrated products, leading to a denser microstructure. The cement composite containing 0.01 wt.% graphene exhibited a compressive strength of 72.7 MPa, representing a 47.5% improvement over the plain cement. Furthermore, the resulting cement demonstrated enhanced water resistance compared to graphene oxide-reinforced-cement. This approach offers a cost-effective and sustainable way of producing high-strength, durable cement composite.
키워드
- 제목
- High-performance cement with minimal graphene content enabled by improved dispersion through cellulose nanofibers
- 저자
- Park, Jae Seo; Kim, Ki Yun; Kim, Line; Jung, Gayoung; Kim, Ji Yun; Lee, Won Hwa; Lee, Jea Uk; Yang, Seung Jae
- 발행일
- 2025-12
- 유형
- Article
- 저널명
- Carbon Letters
- 권
- 35
- 호
- 6
- 페이지
- 3187 ~ 3200