Publication | Closed Access
Molecular Weights of Cyclic and Hollow Clusters Measured by DOSY NMR Spectroscopy
82
Citations
28
References
2009
Year
Hollow Clusters MeasuredEngineeringNanoclusterMagnetic ResonanceMolecular WeightsChemistrySoft MatterSpectra-structure CorrelationDiffusion CoefficientTransport PhenomenaAnomalous DiffusionBiophysicsMaterials ScienceCluster SciencePhysicsPower LawMultiphase FlowDiffusion ResistanceNatural SciencesDosy Nmr SpectroscopyHydrodynamicsDiffusion ProcessStokes-einstein ExpressionCluster ChemistryChemical KineticsNuclear Magnetic Resonance SpectroscopyMultiscale Modeling
The Stokes-Einstein expression of the diffusion coefficient as a function of the hydrodynamic radius of the diffusing object does not explicitly carry the mass dependency of the object. It is possible to correlate the translational self-diffusion coefficients D with the molecular weight M for an ensemble of cyclic or hollow clusters ranging from about 200 to 30,000 g x mol(-1). From this correlation, the mass of a cluster can be deduced from its diffusion coefficient. Consistency of diffusion as a power law of mass and Stokes-Einstein formulation is completely fulfilled with the selected compounds of this contribution.
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