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High Uptakes of CO<sub>2</sub> and CH<sub>4</sub> in Mesoporous Metal—Organic Frameworks MIL-100 and MIL-101

Langmuir · 2008 · Vol. 24(14) · pp. 7245–7250
Philip L. LlewellynSandrine BourrellyChristian SerreAlexandré VimontMarco DaturiLomig HamonGuy De WeireldJong‐San ChangDo‐Young HongYoung Kyu HwangSung Hwa JhungGérard Férey

Abstract

Mesoporous MOFs MIL-100 and MIL-101 adsorb huge amounts of CO2 and CH4. Characterization was performed using both manometry and gravimetry in different laboratories for isotherms coupled with microcalorimetry and FTIR to specify the gas-solid interactions. In particular, the uptake of carbon dioxide in MIL-101 has been shown to occur with a record capacity of 40 mmol g(-1) or 390 cm3STP cm(-3) at 5 MPa and 303 K.

Metal-Organic Frameworks: Synthesis and ApplicationsCovalent Organic Framework ApplicationsEnhanced Oil Recovery TechniquesMesoporous materialMetal-organic frameworkMetalChemistryChemical engineeringMaterials scienceNanotechnologyCatalysisPhysical chemistryOrganic chemistry

Funding

  • Agence Nationale de la Recherche
Citations
1,128
FWCI
40.18
field-weighted impact
References
31
Percentile
100%
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Citations per year
References
Functional Porous Coordination Polymers
Angewandte Chemie International Edition · 2004 · 10,890 citations
High-Pressure Adsorption Equilibria of Methane and Carbon Dioxide on Several Activated Carbons
Journal of Chemical & Engineering Data · 2005 · 588 citations
Metal–organic frameworks: a new class of porous materials
Microporous and Mesoporous Materials · 2004 · 2,886 citations
Metallo-organic molecular sieve for gas separation and purification
Microporous and Mesoporous Materials · 2002 · 768 citations
Crystallized Frameworks with Giant Pores:  Are There Limits to the Possible?
Accounts of Chemical Research · 2005 · 1,317 citations
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