A pore network model for diffusion in nanoporous carbons: Validation by molecular dynamics simulation

42Citations
Citations of this article
33Readers
Mendeley users who have this article in their library.
Get full text

Abstract

A hybrid molecular dynamics simulation/pore network model (MD/PNM) approach is developed for predicting diffusion in nanoporous carbons. This approach is computationally fast, and related to the structure of the real material. The PNM takes into account both the geometrical (a distribution of pore sizes) and topological (the pore network connectivity) characteristics of nanoporous carbons, which are obtained by analysing adsorption data. The effective diffusion coefficient is calculated by taking the transport diffusion coefficients in single slit-shaped model pores from MD simulation and then computing the effective value over the PNM. The reliability of this approach is evaluated by comparing the results of the PNM analysis with a more rigorous, but much slower, simulation applied to a realistic model material, the virtual porous carbon (VPC). We obtain good agreement between the diffusion coefficients for the PNM and the VPC, indicating the reliability of the hybrid MD/PNM method and it can be used in industry for materials design. © 2008 Elsevier Ltd. All rights reserved.

Cite

CITATION STYLE

APA

Cai, Q., Buts, A., Seaton, N. A., & Biggs, M. J. (2008). A pore network model for diffusion in nanoporous carbons: Validation by molecular dynamics simulation. Chemical Engineering Science, 63(13), 3319–3327. https://doi.org/10.1016/j.ces.2008.03.032

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free