Design, Parameterization, and Implementation of Atomic Force Fields for Adsorption in Nanoporous Materials

Open Access
Authors
Publication date 11-2019
Journal Advanced Theory and Simulations
Article number 1900135
Volume | Issue number 2 | 11
Number of pages 62
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
Molecular simulations are an excellent tool to study adsorption and diffusion in nanoporous materials. Examples of nanoporous materials are zeolites, carbon nanotubes, clays, metal-organic frameworks (MOFs), covalent organic frameworks (COFs) and zeolitic imidazolate frameworks (ZIFs). The molecular confinement these materials offer has been exploited in adsorption and catalysis for almost 50 years. Molecular simulations have provided understanding of the underlying shape selectivity, and adsorption and diffusion effects. Much of the reliability of the modeling predictions depends on the accuracy and transferability of the force field. However, flexibility and the chemical and structural diversity of MOFs add significant challenges for engineering force fields that are able to reproduce experimentally observed structural and dynamic properties. Recent developments in design, parameterization, and implementation of force fields for MOFs and zeolites are reviewed.
Document type Article
Note In special issue: Frontiers in Modeling Metal-Organic Frameworks
Language English
Published at https://doi.org/10.1002/adts.201900135
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