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Defect Engineering: Tuning the Porosity and Composition of the Metal–Organic Framework UiO-66 via Modulated Synthesis
Chemistry of Materials · 2016 · Vol. 28(11) · pp. 3749–3761
Greig C. Shearer✉(University of Oslo)Sachin Chavan(University of Oslo)Silvia Bordiga(University of Oslo)Stian Svelle(University of Oslo)Unni Olsbye(University of Oslo)Karl Petter Lillerud(University of Oslo)
Abstract
Presented in this paper is a deep investigation into the defect chemistry of UiO-66 when synthesized in the presence of monocarboxylic acid modulators under the most commonly employed conditions. We unequivocally demonstrate that missing cluster defects are the predominant defect and that their concentration (and thus the porosity and composition of the material) can be tuned to a remarkable extent by altering the concentration and/or acidity of the modulator. Finally, we attempt to rationalize these observations by speculating on the underlying solution chemistry.
Metal-Organic Frameworks: Synthesis and ApplicationsPolyoxometalates: Synthesis and ApplicationsAdvanced Nanomaterials in CatalysisPorosityComposition (language)Metal-organic frameworkMetalMaterials scienceChemistryChemical engineeringInorganic chemistryOrganic chemistryAdsorption
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A facile synthesis of UiO-66, UiO-67 and their derivatives
Chemical Communications · 2013 · 1,668 citations
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Chemical Science · 2011 · 562 citations
Isoreticular synthesis and modification of frameworks with the UiO-66 topology
Chemical Communications · 2010 · 804 citations
Modulated Synthesis of Zr‐Based Metal–Organic Frameworks: From Nano to Single Crystals
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