Clustering of water on hydrated protons in a supersonic free jet expansion
The Journal of Chemical Physics · 1974 · 303 citations · 25 references
EngineeringNuclear PhysicsFluid MechanicsChemistryGas DynamicBiophysicsCluster SciencePhysicsIon Nucleation PhenomenonPhysical ChemistryHydrated ProtonsHydrogenMultiphase FlowQuantum ChemistrySeries H+Ion MobilityGas PhaseNatural SciencesHydrodynamicsProton TransferCluster ChemistryIon Structure
This paper presents results concerning size distribution and growth in the gas phase of ions in the series H+(H2O)n. The measurements span a range of cluster sizes up to n =28, a domain not previously investigated quantitatively. The molecular beam sampling technique developed for this study promises to be a powerful tool in the study of ion nucleation phenomenon. Noteworthy observations include the unusual stability of the cluster with n =21 and the absence of trapped molecules of carrier gas within a cluster.
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Unimolecular Dissociations and Free Radical Recombination Reactions
R. A. Marcus · The Journal of Chemical Physics · 1952
924 citations
Velocity Distributions in Molecular Beams from Nozzle Sources
James B. Anderson, John B. Fenn · The Physics of Fluids · 1965
456 citations
E. E. Ferguson · Annual Review of Physical Chemistry · 1975
405 citations
P. Kebarle, Sharon K. Searles, A. Zolla et al. · Journal of the American Chemical Society · 1967
356 citations
XI. Condensation of water vapour in the presence of dust-free air and other gases
Charles Thomson Rees Wilson · Philosophical Transactions of the Royal Society of London Series A Containing Papers of a Mathematical or Physical Character · 1897
355 citations