Diffusion-mediated passing of molecular species in linear nanopores constrained by orientational alignment

Y YONG HAN M Md. Khaledur Rahman (Ames National Laboratory, USDOE 1 , Ames, Iowa 50011,) Y Yu Lim Kim (Department of Chemistry, Iowa State University 1 , Ames, Iowa 50011,) M Mark S. Gordon (Department of Chemistry and Ames National Laboratory, USDOE) J James W. Evans (Ames National Laboratory, USDOE 1 , Ames, Iowa 50011,)

Abstract

For diffusion-mediated catalytic conversion reactions in materials with narrow linear nanopores, e.g., mesoporous silica MCM-41, a key parameter is the propensity for product species to be able to pass reactant species and thus to efficiently exit the pore. For elongated species, this can require orientational alignment with the pore axis. We perform benchmark analyses for such solution-phase systems where one of these species is elongated in order to quantify the dependence of this passing propensity, P, on pore diameter and on the rotational diffusion coefficient, Dr, of the elongated species. In particular, we consider the passing of a spherical and an elongated spherocylindrical shaped species in a cylindrical pore in an implicit solvent, where these species cannot overlap. Passing is mediated by diffusive Brownian motion of these species as described by strongly damped Langevin dynamics. We quantify scaling of P for pore width just above the threshold where passing is sterically blocked, and also reveal a significant decrease in P for lower Dr. We also consider the dependence of P on the aspect ratio of the elongated species and obtain an exact result in the limiting regime of large aspect ratio.

Article Details

Volume / Issue Vol. 163, Issue 4
Published July 28, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (5)

Y

YONG HAN

M

Md. Khaledur Rahman

Ames National Laboratory, USDOE 1 , Ames, Iowa 50011,

Y

Yu Lim Kim

Department of Chemistry, Iowa State University 1 , Ames, Iowa 50011,

M

Mark S. Gordon

Department of Chemistry and Ames National Laboratory, USDOE

J

James W. Evans

Ames National Laboratory, USDOE 1 , Ames, Iowa 50011,