Study of van der Waals bonding and interactions in metal organic framework materials
arXiv:1403.3059 · doi:10.1088/0953-8984/26/13/133002
Abstract
Metal organic framework (MOF) materials have attracted a lot of attention due to their numerous applications in fields such as hydrogen storage, carbon capture, and gas sequestration. In all these applications, van der Waals forces dominate the interaction between the small guest molecules and the walls of the MOFs. In this review article, we describe how a combined theoretical and experimental approach can successfully be used to study those weak interactions and elucidate the adsorption mechanisms important for various applications. On the theory side, we show that, while standard density functional theory is not capable of correctly describing van der Waals interactions, functionals especially designed to include van der Waals forces exist, yielding results in remarkable agreement with experiment. From the experimental point of view, we show examples in which IR adsorption and Raman spectroscopy are essential to study molecule/MOF interactions. Importantly, we emphasize throughout this review that a combination of theory and experiment is crucial to effectively gain further understanding. In particular, we review such combined studies for the adsorption mechanism of small molecules in MOFs, the chemical stability of MOFs under humid conditions, water cluster formation inside MOFs, and the diffusion of small molecules into MOFs. The understanding of these phenomena is critical for the rational design of new MOFs with desired properties.
References in corpus (14)
- A Higher-Accuracy van der Waals Density Functional
- Stability and Hydrolyzation of Metal Organic Frameworks with Paddle-Wheel SBUs upon Hydration
- Hybrid improper ferroelectricity in a Multiferroic and Magnetoelectric hybrid organic-inorganic perosvkite
- Tuning the Gate Opening Pressure of Metal Organic Frameworks (MOFs) for the Selective Separation of Hydro-carbons
- Potassium intercalation in graphite: A van der Waals density-functional study
- Diffusion of Small Molecules in Metal Organic Framework Materials
- Towards a working density-functional theory for polymers: First-principles determination of the polyethylene crystal structure
- When metal organic frameworks turn into linear magnets
- vdW-DF Study of energetic, structural, and vibrational properties of small water clusters and ice Ih
- Van der Waals interactions in the ground state of Mg(BH4)2 from density functional theory
- Theoretical and experimental analysis of H2 binding in a prototype metal organic framework material
- NMR study of small molecule adsorption in MOF-74-Mg
- A theoretical study of the hydrogen-storage potential of (H_2)_4CH_4 in metal organic framework materials and carbon nanotubes
- Molecular Biology at the Quantum Level: Can Modern Density Functional Theory Forge the Path?