Publication | Open Access
Zeolitic imidazole frameworks: structural and energetics trends compared with their zeolite analogues
245
Citations
28
References
2009
Year
Materials ScienceInorganic ChemistryChemical EngineeringZeolite AnaloguesZeolitic Imidazole FrameworksTotal EnergyPeriodic Dft CalculationsEngineeringMolecular SieveCovalent Bonded FrameworkNanoporous MaterialOrganic ChemistryCatalysisChemistryEnergetics TrendsMetal-organic PolyhedronZeoliteFunctional Materials
We use periodic DFT calculations to compute the total energy of known zeolitic imidazole frameworks (ZIFs) together with those of hypothetical porous ZIFs. We show that the total energy of ZIFs decreases with increasing density, in a similar fashion to the alumino-silicate zeolites, but with a more complex energy landscape. The computational evaluation of the stability of hypothetical ZIFs is useful in the search for viable synthesis targets. Our results suggest that a number of hitherto undiscovered nanoporous topologies should be amenable to synthesis (CAN, ATN) and that even the most open framework types might be obtained with appropriately substituted ligands.
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