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Metal−Organic Frameworks with Exceptionally High Capacity for Storage of Carbon Dioxide at Room Temperature

Journal of the American Chemical Society · 2005 · Vol. 127(51) · pp. 17998–17999
Andrew R. MillwardOmar M. Yaghi

Abstract

Metal-organic frameworks (MOFs) show high CO2 storage capacity at room temperature. Gravimetric CO2 isotherms for MOF-2, MOF-505, Cu3(BTC)2, MOF-74, IRMOFs-11, -3, -6, and -1, and MOF-177 are reported up to 42 bar. Type I isotherms are found in all cases except for MOFs based on Zn4O(O2C)6 clusters, which reveal a sigmoidal isotherm (having a step). The various pressures of the isotherm steps correlate with increasing pore size, which indicates potential for gas separations. The amine functionality of the IRMOF-3 pore shows evidence of relatively increased affinity for CO2. Capacities qualitatively scale with surface area and range from 3.2 mmol/g for MOF-2 to 33.5 mmol/g (320 cm3(STP)/cm3, 147 wt %) for MOF-177, the highest CO2 capacity of any porous material reported.

Metal-Organic Frameworks: Synthesis and ApplicationsCovalent Organic Framework ApplicationsCarbon dioxide utilization in catalysisChemistryGravimetric analysisMetal-organic frameworkCarbon dioxideBar (unit)PorosityChemical engineeringAmine gas treatingAtmospheric temperature rangeInorganic chemistry
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References
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Functional Porous Coordination Polymers
Angewandte Chemie International Edition · 2004 · 10,890 citations
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Journal of Chemical & Engineering Data · 2004 · 1,116 citations
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