Publication | Closed Access
Dimensional Control of Brittle Nanoplatelets. A Statistical Analysis of a Thin Film Cracking Approach
44
Citations
22
References
2006
Year
EngineeringMechanical EngineeringDamage MechanismNanoscale ChemistryMechanicsBrittle NanoplateletsA Statistical AnalysisDimensional ControlMicrostructure-strength RelationshipNanometrologyNanomechanicsMaterials ScienceEssential Building BlocksMechanical BehaviorNanotechnologyThin Film CrackingSolid MechanicsNano ScaleMicrofabricationNanomaterialsFilm ThicknessApplied PhysicsNanofabricationCrack FormationDynamic Crack PropagationMechanics Of MaterialsNanostructuresNanomaterials Engineering
Nanoparticles are essential building blocks for nanotechnology. In this paper we demonstrate a novel method to create nanoplatelets by thin film cracking. The thickness of the resulting platelets is determined by the film thickness, and their aspect ratio is controlled by the total strain and the elastic mismatch between substrate and thin film. Platelets can be created from any brittle film independently of microstructure and materials class. The feasibility of this method is substantiated by a statistical analysis of the fracture process.
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