Publication | Closed Access
Probing the Geometry and Interconnectivity of Pores in Organic Aerogels Using Hyperpolarized <sup>129</sup>Xe NMR Spectroscopy
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Citations
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References
2004
Year
Materials ScienceMolecular SievePore StructureEngineeringNmr SpectroscopyNanoporous MaterialNanomaterialsNanotechnologyPolymer ScienceSurface SciencePorous PolymerHp 129XeCarbon AerogelsChemistryFunctional MaterialsPorous Body
Hyperpolarized (HP) 129Xe NMR was used for the first time to probe the geometry and interconnectivity of pores in RF aerogels and to correlate them with the [resorcinol]/[catalyst] (R/C) ratio. We have demonstrated that HP 129Xe NMR is an ideal method for accurately measuring the volume-to-surface-area (Vg/S) ratios for soft mesoporous materials without using any geometric models. The Vg/S parameter, which is related both to the geometry and the interconnectivity of the porous space, has been found to correlate strongly with the R/C ratio and exhibits an unusually large span: an increase in the R/C ratio from 50 to 500 results in about 5-fold rise in Vg/S. Unlike conventional techniques, HP 129Xe NMR spectroscopy probes the geometry and interconnectivity of the nano- or mesopores in soft materials, providing new insights into the pore structure.
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