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Nanoscale mass sensing based on vibration of single-layered graphene sheet in thermal environments

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Publication:318037
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DOI10.1007/S10409-013-0102-6zbMath1346.74079OpenAlexW2089077233MaRDI QIDQ318037

S. Ahmad Fazelzadeh, Esmaeal Ghavanloo

Publication date: 4 October 2016

Published in: Acta Mechanica Sinica (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s10409-013-0102-6


zbMATH Keywords

vibrationnonlocal elasticity theorythermal environmentrelative frequency shiftsingle-layered graphene sheet


Mathematics Subject Classification ID

Classical linear elasticity (74B05) Vibrations in dynamical problems in solid mechanics (74H45) Thermal effects in solid mechanics (74F05) Micromechanical theories (74A60)


Related Items (2)

Graphene-based mass sensors: chaotic dynamics analysis using the nonlocal strain gradient model ⋮ Application of the generalized Hooke's law for viscoelastic materials (GHVMs) in nanoscale mass sensing applications of viscoelastic nanoplates: a theoretical study




Cites Work

  • Vibration of quadrilateral embedded multilayered graphene sheets based on nonlocal continuum models using the Galerkin method
  • Nonlocal Continuum Field Theories




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