Publication | Closed Access
Ultrasonic‐Ball Milling: A Novel Strategy to Prepare Large‐Size Ultrathin 2D Materials
69
Citations
36
References
2020
Year
NanosheetEngineeringTwo-dimensional MaterialsLow Dimensional MaterialMaterial InnovationComplete Lattice StructureFriction ForceModerate SapphireMaterial ProcessingMaterials FabricationNanostructure SynthesisMaterials SciencePowder MetallurgyNovel StrategyNanotechnologyNanomanufacturingFabrication TechniqueUltrasonic‐ball MillingUltrasound3D PrintingMicrostructureMicrofabricationNanomaterialsApplied PhysicsGraphene
Abstract Large‐size ultrathin 2D materials, with extensive applications in optics, medicine, biology, and semiconductor fields, can be prepared through an existing common physical and chemical process. However, the current exfoliation technologies still need to be improved upon with urgency. Herein, a novel and simple “ultrasonic‐ball milling” strategy is reported to effectively obtain high quality and large size ultrathin 2D materials with complete lattice structure through the introduction of moderate sapphire (Al 2 O 3 ) abrasives in a liquid phase system. Ultimately numerous high‐quality ultrathin h‐BN, graphene, MoS 2 , WS 2 , and BCN nanosheets are obtained with large sizes ranging from 1–20 µm, small thickness of ≈1–3 nm and a high yield of over 20%. Utilizing shear and friction force synergistically, this strategy provides a new method and alternative for preparing and optimizing large size ultrathin 2D materials.
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