Publication | Closed Access
Controlling Pattern Formation in Nanoparticle Assemblies via Directed Solvent Dewetting
126
Citations
27
References
2007
Year
Colloidal MaterialEngineeringChemistrySoft MatterNanoscale ChemistryNanostructure SynthesisBiophysicsMaterials ScienceNanotechnologyNanofluidicsDirect ModificationHierarchical AssemblyPattern FormationNanomaterialsInterfacial PhenomenonSelf-assemblyApplied PhysicsNanoparticle OrganizationMedicine
We have achieved highly localized control of pattern formation in two-dimensional nanoparticle assemblies by direct modification of solvent dewetting dynamics. A striking dependence of nanoparticle organization on the size of atomic force microscope-generated surface heterogeneities is observed and reproduced in numerical simulations. Nanoscale features induce a rupture of the solvent-nanoparticle film, causing the local flow of solvent to carry nanoparticles into confinement. Microscale heterogeneities instead slow the evaporation of the solvent, producing a remarkably abrupt interface between different nanoparticle patterns.
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