Publication | Closed Access
Microscopic Observation of Kinetic Molecular Sieving of Hydrogen Isotopes in a Nanoporous Material
102
Citations
14
References
2010
Year
EngineeringNanoporous MaterialComputational ChemistryChemistryChemical EngineeringHydrogen IsotopesMicroscopic ObservationMolecular KineticsKinetic Molecular SievingQuasielastic NeutronMolecular SieveHigh-energy Nuclear ReactionMolecular SievingPhysicsNanotechnologyHydrogenQuantum ChemistryCarbon Molecular SieveHydrogen TransitionNatural SciencesNeutron ScatteringChemical KineticsMolecular Fragmentation
We report quasielastic neutron scattering studies of H2-D2 diffusion in a carbon molecular sieve, demonstrating remarkable quantum effects, with the heavier isotope diffusing faster below 100 K, confirming our recent predictions. Our transition state theory and molecular dynamics calculations show that while it is critical for this effect to have narrow windows of size comparable to the de Broglie wavelength, high flux requires that the energy barrier be reduced through small cages. Such materials will enable novel processes for kinetic molecular sieving of hydrogen isotopes.
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