Publication | Closed Access
Elastic properties of suspended black phosphorus nanosheets
84
Citations
33
References
2016
Year
NanosheetEngineeringMechanical EngineeringSoft MatterMechanics ModelingNanoengineeringNanoscale ModelingMaterial PhysicNanometrologyPhosphoreneNanomechanicsMaterials ScienceNanotechnologyMaterial MechanicsBlack PhosphorusElastic ModulusMechanical PropertiesNanomaterialsFlexible ElectronicsMaterials CharacterizationApplied PhysicsElastic PropertiesNanofabricationBp NanosheetsMechanics Of Materials
The mechanical properties of black phosphorus (BP) nanosheets suspended over circular holes were measured by an atomic force microscope nanoindentation method. The continuum mechanic model was introduced to calculate the elastic modulus and pretension of BP nanosheets with thicknesses ranging from 14.3 to 34 nm. Elastic modulus of BP nanosheets declines with thickness, and the maximum value is 276 ± 32.4 GPa. Besides, the effective strain of BP ranges from 8 to 17% with a breaking strength of 25 GPa. Our results show that BP nanosheets serve as a promising candidate for flexible electronic applications.
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