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Exceptional chemical and thermal stability of zeolitic imidazolate frameworks

Proceedings of the National Academy of Sciences · 2006 · Vol. 103(27) · pp. 10186–10191
Kyo Sung ParkZheng NiAdrien P. CôtéJae Yong ChoiRudan HuangFernando J. Uribe‐RomoHee K. ChaeM. O’KeeffeOmar M. Yaghi

Abstract

Twelve zeolitic imidazolate frameworks (ZIFs; termed ZIF-1 to -12) have been synthesized as crystals by copolymerization of either Zn(II) (ZIF-1 to -4, -6 to -8, and -10 to -11) or Co(II) (ZIF-9 and -12) with imidazolate-type links. The ZIF crystal structures are based on the nets of seven distinct aluminosilicate zeolites: tetrahedral Si(Al) and the bridging O are replaced with transition metal ion and imidazolate link, respectively. In addition, one example of mixed-coordination imidazolate of Zn(II) and In(III) (ZIF-5) based on the garnet net is reported. Study of the gas adsorption and thermal and chemical stability of two prototypical members, ZIF-8 and -11, demonstrated their permanent porosity (Langmuir surface area = 1,810 m(2)/g), high thermal stability (up to 550 degrees C), and remarkable chemical resistance to boiling alkaline water and organic solvents.

Metal-Organic Frameworks: Synthesis and ApplicationsMagnetism in coordination complexesZeolite Catalysis and SynthesisImidazolateZeolitic imidazolate frameworkThermal stabilityAdsorptionAluminosilicateChemical stabilityChemical engineeringInorganic chemistryPorosityChemistry

MeSH terms

ImidazolesTemperatureMolecular StructureZeolitesCrystallography, X-Ray

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Division of Materials Research
Citations
7,256
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Exceptional chemical and thermal stability of zeolitic imidazolate frameworks
Proceedings of the National Academy of Sciences · 2006 · 7,256 citations
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