Publication | Closed Access
Disentangling mechanical and mass effects on nanomechanical resonators
26
Citations
23
References
2010
Year
NanosensorsEngineeringAnalytical MicrosystemsBiomedical EngineeringOptomechanicsNanoscale HeterogeneityNanosensorMicrofluidicsNanomechanicsBiophysicsNanomechanical ResonatorsPhysicsMass EffectsNanotechnologyNanometer Thick SamplesMicrofabricationBiomedical DiagnosticsApplied PhysicsNano Electro Mechanical System
Micro and nanomechanical resonators are powerful and label-free sensors of analytes in various environments. Their response, however, is a convolution of mass, rigidity, and nanoscale heterogeneity of adsorbates. Here we demonstrate a procedure to disentangle this complex sensor response, to simultaneously measure both mass and elastic properties of nanometer thick samples. This turns an apparent disadvantage of these resonators into a striking and unique asset, enabling them to measure more than mass alone.
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