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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초록

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

NanohybridsGrapheneCellulose nanofiberFillerCement nanocompositeMECHANICAL-PROPERTIESCARBON NANOTUBESOXIDEHYDRATIONMICROSTRUCTUREDURABILITYSTRENGTHSUPERPLASTICIZERENHANCEMENTCOMPOSITE
제목
High-performance cement with minimal graphene content enabled by improved dispersion through cellulose nanofibers
저자
Park, Jae SeoKim, Ki YunKim, LineJung, GayoungKim, Ji YunLee, Won HwaLee, Jea UkYang, Seung Jae
DOI
10.1007/s42823-025-00988-2
발행일
2025-12
유형
Article
저널명
Carbon Letters
35
6
페이지
3187 ~ 3200