Chemical Communications · 2015 · 53 citations · 35 references
Inorganic ChemistryChemical EngineeringComplementary Organic MotifsEngineeringPorous CarbonNatural SciencesCovalent Bonded FrameworkCo2 CaptureMof PlatformMolecular BiologyOrganic ChemistryCatalysisChemistryMetal-organic PolyhedronNew Design StrategyMetal-organic Frameworks'Complementary Organic Motifs
CO2 capture is essential for reducing the carbon footprint of coal-fired power plants. Here we show, both experimentally and computationally, a new design strategy for capturing CO2 in nanoporous adsorbents. The approach involves 'complementary organic motifs' (COMs), which have a precise alignment of charge densities that is complementary to the CO2 quadrupole. Two promising COMs were post-synthetically incorporated into a robust metal-organic framework (MOF) material using solvent-assisted ligand incorporation (SALI). We demonstrate that these COM-functionalized MOFs exhibit high capacity and selectivity for CO2 relative to other reported motifs.
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