In this study, the vibrational properties of single- and double-layer graphene sheets (GSs) with attached nanoparticles are analyzed based on the nonlocal elasticity theory. The potential applications of atomic-scale mass sensing are presented using GSs with simply supported boundary condition. The frequency equation for GSs with an attached nanoparticle is derived to investigate the vibration frequency of the GSs under thermal environment. Using the proposed model, the relationship between the frequency shifts of graphene-based mass sensor and the attached nanoparticles is obtained. The nonlocal effect and the temperature dependence on the variation of frequency shifts with the attached nanomass and the positions on the GS are investigated...
Detailed studies on the nanoscale vibration characteristics of multi-layered graphene sheets (MLGSs)...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...
This paper analyzes the thermo-vibration response of a graphene sheet excited with a uniform harmoni...
In this study, the vibrational properties of single- and double-layer graphene sheets (GSs) with att...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
Nano-materials such as graphene sheets have a great opportunity to be applied in development of a ne...
In this study, the vibration behavior of annular and circular graphene sheet coupled with temperatur...
Application of single layered graphene sheets (SLGSs) as resonant sensors in detection of ultra-¯ne ...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
We use suspended graphene electromechanical resonators to study the variation of resonant frequency ...
In this research work, the flexural vibration of graphene sheet nanostructures is modeled and studie...
Graphene sheets are widely applied due to their unique and highly valuable properties, such as energ...
Bilayer graphene sheets (BLGSs) are currently receiving increasing attention. In this paper, the vib...
The enormous stiffness and low density of graphene make it an ideal material for nanoelectromechanic...
In last decade, nanoplates were used in various types of industries such as electronics, aircraft, s...
Detailed studies on the nanoscale vibration characteristics of multi-layered graphene sheets (MLGSs)...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...
This paper analyzes the thermo-vibration response of a graphene sheet excited with a uniform harmoni...
In this study, the vibrational properties of single- and double-layer graphene sheets (GSs) with att...
In this paper, the effect of the temperature change on the vibration frequency of mono-layer graphen...
Nano-materials such as graphene sheets have a great opportunity to be applied in development of a ne...
In this study, the vibration behavior of annular and circular graphene sheet coupled with temperatur...
Application of single layered graphene sheets (SLGSs) as resonant sensors in detection of ultra-¯ne ...
This paper presents the thermal vibration analysis of single-layer graphene sheet embedded in polyme...
We use suspended graphene electromechanical resonators to study the variation of resonant frequency ...
In this research work, the flexural vibration of graphene sheet nanostructures is modeled and studie...
Graphene sheets are widely applied due to their unique and highly valuable properties, such as energ...
Bilayer graphene sheets (BLGSs) are currently receiving increasing attention. In this paper, the vib...
The enormous stiffness and low density of graphene make it an ideal material for nanoelectromechanic...
In last decade, nanoplates were used in various types of industries such as electronics, aircraft, s...
Detailed studies on the nanoscale vibration characteristics of multi-layered graphene sheets (MLGSs)...
Graphene nanoribbons (GNRs), the finite-wide counterparts of crystalline graphene sheets, have been ...
This paper analyzes the thermo-vibration response of a graphene sheet excited with a uniform harmoni...