Publication | Closed Access
Fast Nuclear Spin Conversion in Water Clusters and Ices: A Matrix Isolation Study
41
Citations
37
References
2011
Year
EngineeringNuclear PhysicsWater ClustersMagnetic ResonanceQuantum Spin IceChemistrySpectra-structure CorrelationNucleationSingle Water MoleculesBiophysicsIce-water SystemMatrix Isolation StudyPhysicsNuclear Spin ConversionRovibrational SpectroscopyPhysical ChemistryQuantum ChemistryHydrogenNatural SciencesHydrogen-bonded LiquidDynamic Nuclear PolarizationNuclear Spin
Single water molecules have been isolated in solid Ar matrices at 4 K and studied by rovibrational spectroscopy using FTIR in the regions of the ν(1), ν(2), and ν(3) modes. Upon nuclear spin conversion at 4 K, essentially pure para-H(2)O was prepared, followed by subsequent fast annealing generating ice particles. FTIR studies of the vapor above the condensed water upon annealing to T ≥ 250 K indicate fast reconversion of nuclear spin to equilibrium conditions. Our results indicate that nuclear spin conversion is fast in water dimers and larger clusters, which preclude preparation of concentrated samples of para-H(2)O, such as in ice or vapor.
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