Temperature dependence of fluid transport in nanopores

  • Xu, Baoxing
  • Wang, Binglei
  • Park, Taehyo
  • Qiao, Yu
  • Zhou, Qulan
  • 외 1명
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초록

Understanding the temperature-dependent nanofluidic transport behavior is critical for developing thermomechanical nanodevices. By using non-equilibrium molecular dynamics simulations, the thermally responsive transport resistance of liquids in model carbon nanotubes is explored as a function of the nanopore size, the transport rate, and the liquid properties. Both the effective shear stress and the nominal viscosity decrease with the increase of temperature, and the temperature effect is coupled with other non-thermal factors. The molecular-level mechanisms are revealed through the study of the radial density profile and hydrogen bonding of confined liquid molecules. The findings are verified qualitatively with an experiment on nanoporous carbon.

키워드

MOLECULAR-DYNAMICS SIMULATIONSLENNARD-JONES FLUIDSCARBON NANOTUBESNANOFLUIDIC TRANSPORTAQUEOUS-SOLUTIONSPOISEUILLE FLOWWATER TRANSPORTION-TRANSPORTLIQUID WATERPORES
제목
Temperature dependence of fluid transport in nanopores
저자
Xu, BaoxingWang, BingleiPark, TaehyoQiao, YuZhou, QulanChen, Xi
DOI
10.1063/1.4712034
발행일
2012-05
유형
Article
저널명
Journal of Chemical Physics
136
18
페이지
1 ~ 8