Publication | Closed Access
Transformative Two-Dimensional Layered Nanocrystals
68
Citations
37
References
2011
Year
Materials ScienceIon DiffusionOne-dimensional MaterialTransition Metal ChalcogenidesEngineeringNanomaterialsNanotechnologySurface ScienceApplied PhysicsLow Dimensional MaterialNanostructure SynthesisChemistryLayered MaterialNanocrystalline MaterialSelective Chemical ReactionNanoarchitectonicsNanostructuresRegioselective Chemical Reactions
Regioselective chemical reactions and structural transformations of two-dimensional (2D) layered transition-metal chalcogenide (TMC) nanocrystals are described. Upon exposure of 2D TiS(2) nanodiscs to a chemical stimulus, such as Cu ion, selective chemical reaction begins to occur at the peripheral edges. This edge reaction is followed by ion diffusion, which is facilitated by interlayer nanochannels and leads to the formation of a heteroepitaxial TiS(2)-Cu(2)S intermediate. These processes eventually result in the generation of a single-crystalline, double-convex toroidal Cu(2)S nanostructure. Such 2D regioselective chemical reactions also take place when other ionic reactants are used. The observations made and chemical principles uncovered in this effort indicate that a general approach exists for building various toroidal nanocrystals of substances such as Ag(2)S, MnS, and CdS.
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