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Author Spotlight: Accelerating Discovery in Microporous Material Chemistry
Published on: October 6, 2023
Pitfalls in metal-organic framework crystallography: towards more accurate crystal structures
S Øien-Ødegaard1, G C Shearer, D S Wragg
1Department of Chemistry, University of Oslo, PO Box 1033, 0315 Oslo, Norway. sigurdoi@kjemi.uio.no.
Abstract:
Single crystal X-ray diffraction (SC-XRD) is the principal method for determining the crystal structures of metal-organic frameworks (MOFs). This tutorial deals with the handling of MOF crystals and analysis of crystallographic data obtained from single-crystal X-ray diffraction, focusing on two features that are particularly important in MOF crystallography and have a large impact on the quality and reliability of the final crystal structures: (1) the treatment of pore-occupying entities (both in the physical crystals and in the crystallographic model) and (2) crystallographic twinning. Proper handling of samples and data will reduce the need for using solvent masking software (e.g. SQUEEZE) to obtain acceptable crystal structures. If SC-XRD is to retain its position as the definitive method of MOF structure determination, these issues must be addressed when a new MOF structure is determined and reported. The issues addressed in this review is also valid for other porous, crystalline solids such as porous organic cages, metal-organic polyhedra, covalent organic frameworks and zeotype materials.
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To explain the observed behavior of transition metal complexes (such as colors), a model involving electrostatic interactions between the electrons from the ligands and the electrons in the unhybridized d orbitals of the central metal atom has been developed. This electrostatic model is crystal field theory (CFT). It helps to understand, interpret, and predict the colors, magnetic behavior, and some structures of coordination compounds of transition metals.
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