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A New Zirconium Inorganic Building Brick Forming Metal Organic Frameworks with Exceptional Stability

Journal of the American Chemical Society · 2008 · Vol. 130(42) · pp. 13850–13851
J. HafizovicSøren JakobsenUnni OlsbyeNathalie GuillouCarlo LambertiSilvia BordigaKarl Petter Lillerud

Abstract

Porous crystals are strategic materials with industrial applications within petrochemistry, catalysis, gas storage, and selective separation. Their unique properties are based on the molecular-scale porous character. However, a principal limitation of zeolites and similar oxide-based materials is the relatively small size of the pores, typically in the range of medium-sized molecules, limiting their use in pharmaceutical and fine chemical applications. Metal organic frameworks (MOFs) provided a breakthrough in this respect. New MOFs appear at a high and an increasing pace, but the appearances of new, stable inorganic building bricks are rare. Here we present a new zirconium-based inorganic building brick that allows the synthesis of very high surface area MOFs with unprecedented stability. The high stability is based on the combination of strong Zr-O bonds and the ability of the inner Zr6-cluster to rearrange reversibly upon removal or addition of mu3-OH groups, without any changes in the connecting carboxylates. The weak thermal, chemical, and mechanical stability of most MOFs is probably the most important property that limits their use in large scale industrial applications. The Zr-MOFs presented in this work have the toughness needed for industrial applications; decomposition temperature above 500 degrees C and resistance to most chemicals, and they remain crystalline even after exposure to 10 tons/cm2 of external pressure.

Metal-Organic Frameworks: Synthesis and ApplicationsMXene and MAX Phase MaterialsBoron and Carbon Nanomaterials ResearchZirconiumChemistryMetal-organic frameworkChemical stabilityPorosityThermal stabilityChemical engineeringNanotechnologyOxideMesoporous material
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References
Hybrid porous solids: past, present, future
Chemical Society Reviews · 2007 · 5,737 citations
Crystallized Frameworks with Giant Pores:  Are There Limits to the Possible?
Accounts of Chemical Research · 2005 · 1,317 citations
Exceptional chemical and thermal stability of zeolitic imidazolate frameworks
Proceedings of the National Academy of Sciences · 2006 · 7,256 citations
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