Simulating of effective conductivity for graphene-polymer nanocomposites

  • Vatani, Mostafa
  • Zare, Yasser
  • Gharib, Nima
  • Rhee, Kyong Yop
  • Park, Soo-Jin
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초록

The efficient conductivity of graphene-polymer systems is expressed supposing graphene, tunneling and interphase components. The volume shares and inherent resistances of the mentioned components are used to define the efficient conductivity. Besides, the percolation start and the share of graphene and interphase pieces in the nets are formulated by simple equations. Also, the resistances of tunneling and interphase parts are correlated to graphene conductivity and their specifications. Suitable arrangements among experimented data and model's estimates as well as the proper trends between efficient conductivity and model's parameters validate the correctness of the novel model. The calculations disclose that the efficient conductivity improves by low percolation level, dense interphase, short tunnel, large tunneling pieces and poor polymer tunnel resistivity. Furthermore, only the tunneling resistance can govern the electron transportation between nanosheets and efficient conductivity, while the big amounts of graphene and interphase conductivity cannot play a role in the efficient conductivity.

키워드

LOW PERCOLATION-THRESHOLDELECTRICAL-CONDUCTIVITYNANOTUBE NANOCOMPOSITESTENSILE MODULUSINTERPHASECOMPOSITESNETWORKSMODELNANOPARTICLESAGGLOMERATION
제목
Simulating of effective conductivity for graphene-polymer nanocomposites
저자
Vatani, MostafaZare, YasserGharib, NimaRhee, Kyong YopPark, Soo-Jin
DOI
10.1038/s41598-023-32991-w
발행일
2023-04-11
유형
Article
저널명
Scientific Reports
13
1