Skip to main navigation Skip to search Skip to main content

Connection between Thermodynamics and Dynamics of Simple Fluids in Pores: Impact of Fluid-Fluid Interaction Range and Fluid-Solid Interaction Strength

  • William P. Krekelberg
  • , Daniel W. Siderius
  • , Vincent K. Shen
  • , Thomas M. Truskett
  • , Jeffrey R. Errington
  • National Institute of Standards and Technology
  • University of Texas at Austin

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

Using molecular simulations, we investigate how the range of fluid-fluid (adsorbate-adsorbate) interactions and the strength of fluid-solid (adsorbate-adsorbent) interactions impact the strong connection between distinct adsorptive regimes and distinct self-diffusivity regimes reported in [ Krekelberg, W. P.; Siderius, D. W.; Shen, V. K.; Truskett, T. M.; Errington, J. R. Langmuir 2013, 29, 14527-14535 ]. Although increasing the fluid-fluid interaction range changes both the thermodynamics and the dynamic properties of adsorbed fluids, the previously reported connection between adsorptive filling regimes and self-diffusivity regimes remains. Increasing the fluid-fluid interaction range leads to enhanced layering and decreased self-diffusivity in the multilayer-formation regime but has little effect on the properties within film-formation and pore-filling regimes. We also find that weakly attractive adsorbents, which do not display distinct multilayer formation, are hard-sphere-like at super- and subcritical temperatures. In this case, the self-diffusivity of the confined and bulk fluids has a nearly identical scaling relationship with effective density.

Original languageEnglish
Pages (from-to)16316-16327
Number of pages12
JournalJournal of Physical Chemistry C
Volume121
Issue number30
DOIs
StatePublished - Aug 3 2017

Fingerprint

Dive into the research topics of 'Connection between Thermodynamics and Dynamics of Simple Fluids in Pores: Impact of Fluid-Fluid Interaction Range and Fluid-Solid Interaction Strength'. Together they form a unique fingerprint.

Cite this