Comprehending the role played by graphene nanoribbons in modulating the conductivity and self-sensing properties of cementitious composites

  • Li, Peiqi
  • Liu, Junxing
  • Park, Jaeyeon
  • Im, Sumin
  • Chen, Yukun
  • ... Bae, Sungchul
  • 외 1명
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초록

Graphene nanoribbons (GNRs) possess superior electrical properties due to their unique structures, making them increasingly valuable in composite materials. This study investigated the ability of GNRs to serve as nano-reinforcing agents that modify the electrical and self-sensing properties of cementitious composites compared to conventional nanomaterials such as carbon nanotubes (CNTs). Because they are highly dispersible in alkaline environments, GNRs can form effective conductive networks within a cement matrix. Incorporating 0.05 wt% GNRs into a cementitious composite significantly reduced the electrical resistivity of the sample after 28 d of curing by 64.61 % compared to the control sample. After drying, its electrical resistivity was still 42.82 % lower than that of the control sample. Furthermore, the GNRs-incorporated sample (dry state) exhibited a remarkable 63.65 % fractional change in resistivity when subjected to cyclic compressive stress. These results suggest that GNRs hold significant potential for enhancing the electrical and self-sensing properties of cementitious composites.

키워드

DispersionElectrical resistivityGraphene nanoribbonsMicrostructureSelf-sensingGraphene nanoribbon
제목
Comprehending the role played by graphene nanoribbons in modulating the conductivity and self-sensing properties of cementitious composites
저자
Li, PeiqiLiu, JunxingPark, JaeyeonIm, SuminChen, YukunSim, SungwonBae, Sungchul
DOI
10.1016/j.conbuildmat.2024.138905
발행일
2024-11
유형
Article
저널명
Construction and Building Materials
452
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1 ~ 20