Publication | Closed Access
Single-Molecule Imaging of Platinum Ligand Exchange Reaction Reveals Reactivity Distribution
45
Citations
27
References
2010
Year
EngineeringMicroscopyChemistrySingle Molecule BiophysicsChemical ImageChemical ReactionsSingle-molecule ImagingSingle-molecule Fluorescence MicroscopySingle MoleculeMolecular ImagingBiophysicsPhysical ChemistryChemical ReactionSingle-molecule DetectionSurface ChemistrySurface ScienceChemical ProbeMedicineSurface Reactivity
Single-molecule fluorescence microscopy provided information about the real-time distribution of chemical reactivity on silicon oxide supports at the solution-surface interface, at a level of detail which would be unavailable from a traditional ensemble technique or from a technique that imaged the static physical properties of the surface. Chemical reactions on the surface were found to be uncorrelated; that is, the chemical reaction of one metal complex did not influence the location of a future chemical reaction of another metal complex.
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