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- W1977530000 abstract "Abstract The potential applications of piezoelectric nanofilms (PNFs) and double-piezoelectric-nanofilm (DPNF) systems as nanoelectromechanical mass sensors are examined. The PNFs carrying multiple nanoparticles at arbitrary locations are modeled as rectangular nonlocal plates with attached concentrated masses. Using the nonlocal elasticity theory and Hamilton’s principle, the differential equations of motion are derived for both PNF-based and DPNF-based nanosensors. The influences of small scale, initial stress and temperature change on the frequency shifts of the nanoelectromechanical sensors are taken into consideration. Explicit expressions are derived for the resonance frequencies of the nanosensors by employing the Galerkin method. The present results show that when the value of nonlocal parameter decreases, the frequency shifts of piezoelectric nanosensors increase. Further, the frequency shifts of DPNF-based mass sensors are always greater than those of PNF-based mass sensors. The present work would be helpful in the design of nanoelectromechanical mass sensors using PNFs." @default.
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- W1977530000 date "2015-04-01" @default.
- W1977530000 modified "2023-09-30" @default.
- W1977530000 title "Nanoscale mass detection based on vibrating piezoelectric ultrathin films under thermo-electro-mechanical loads" @default.
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- W1977530000 doi "https://doi.org/10.1016/j.physe.2014.12.025" @default.
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