Host–guest interactions in framework materials: Insight from modeling

Author:

Ernst Michelle12ORCID,Evans Jack D.3ORCID,Gryn'ova Ganna12ORCID

Affiliation:

1. Heidelberg Institute for Theoretical Studies (HITS gGmbH) 1 , Schloss-Wolfsbrunnenweg 35, Heidelberg 69118, Germany

2. Interdisciplinary Center for Scientific Computing, Heidelberg University 2 , Im Neuenheimer Feld 205, Heidelberg 69120, Germany

3. Centre for Advanced Nanomaterials and Department of Chemistry, The University of Adelaide 3 , North Terrace, Adelaide, South Australia 5000, Australia

Abstract

The performance of metal–organic and covalent organic framework materials in sought-after applications—capture, storage, and delivery of gases and molecules, and separation of their mixtures—heavily depends on the host–guest interactions established inside the pores of these materials. Computational modeling provides information about the structures of these host–guest complexes and the strength and nature of the interactions present at a level of detail and precision that is often unobtainable from experiment. In this Review, we summarize the key simulation techniques spanning from molecular dynamics and Monte Carlo methods to correlate ab initio approaches and energy, density, and wavefunction partitioning schemes. We provide illustrative literature examples of their uses in analyzing and designing organic framework hosts. We also describe modern approaches to the high-throughput screening of thousands of existing and hypothetical metal–organic frameworks (MOFs) and covalent organic frameworks (COFs) and emerging machine learning techniques for predicting their properties and performances. Finally, we discuss the key methodological challenges on the path toward computation-driven design and reliable prediction of high-performing MOF and COF adsorbents and catalysts and suggest possible solutions and future directions in this exciting field of computational materials science.

Funder

Klaus Tschira Stiftung

H2020 European Research Council

Australian Research Council

Publisher

AIP Publishing

Subject

General Earth and Planetary Sciences,General Engineering,General Environmental Science

Reference234 articles.

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