English

Influence of molecular shape on self-diffusion under severe confinement: A molecular dynamics study

Chemical Physics 2018-08-31 v1

Abstract

We have investigated the effect of molecular shape and charge asymmetry on the translation dynamics of confined hydrocarbon molecules having different shapes but similar kinetic diameters, inside ZSM-5 pores using molecular dynamics simulations. The mean square displacement of propane, acetonitrile, acetaldehyde, and acetone in ZSM-5 exhibit two different regimes - ballistic and diffusive/sub-diffusive. All the molecules except propane exhibit sub-diffusive motion at time scales greater than 1 ps. The intermediate scattering functions reveal that there is a considerable rotational- translational coupling in the motion of all the molecules, due to the strong geometrical restriction imposed by ZSM-5. Overall the difference in shape and asymmetry in charge imposes severe restriction inside the ZSM-5 channels for all the molecules to different extents. Further, the behavior of molecules confined in ZSM-5 in the present study, quantified wherever possible, is compared to their behavior in bulk or in other porous media reported in literature.

Keywords

Cite

@article{arxiv.1808.10053,
  title  = {Influence of molecular shape on self-diffusion under severe confinement: A molecular dynamics study},
  author = {I. Dhiman and U. R. Shrestha and D. Bhowmik and D. R. Cole and S. Gautam},
  journal= {arXiv preprint arXiv:1808.10053},
  year   = {2018}
}

Comments

10 Pages, 10 Figures

R2 v1 2026-06-23T03:48:34.988Z