Due to the limitation of graphene processing technology, the prepared graphene inevitably contains various defects. The defects will have a particular influence on the macroscopic characteristics of the graphene. In this paper, the defect-based graphene nanoresonators are studied. In this study, the resonant properties of graphene were investigated via molecular dynamic simulations. The effect of vacancy defects and hole defects at different positions, numbers, and concentrations on the resonance frequency of graphene nanoribbons was studied. The results indicated that single monatomic vacancy has no effect on graphene resonant frequency, and the concentration of the resonant frequency of graphene decreases almost linearly with the increase...
We utilize classical molecular dynamics simulations to Investigate the intrinsic loss mechanisms of ...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
Nanoelectromechanical systems (NEMS) have drawn considerable attention towards several sensing appli...
Due to the excellent electronic, optical, thermal, chemical, and mechanical properties of graphene, ...
Due to the excellent electronic, optical, thermal, chemical, and mechanical properties of graphene, ...
Graphene is a type of two-dimensional material with special properties and complex mechanical behavi...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
The identification of atomic vacancy defects in graphene is an important and challenging issue, whic...
The vibrational behavior of defected graphene sheets was investigated via finite element analysis. T...
Graphene, a single-atom sheet, has been considered as the most promising material for making future ...
International audienceThe influence of vacancy defects on the electronic and phonon properties of gr...
International audienceThe influence of vacancy defects on the electronic and phonon properties of gr...
Graphene is a carbon based material that has only one atomic layer. It has exceptional electronic an...
We utilize classical molecular dynamics simulations to Investigate the intrinsic loss mechanisms of ...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
Nanoelectromechanical systems (NEMS) have drawn considerable attention towards several sensing appli...
Due to the excellent electronic, optical, thermal, chemical, and mechanical properties of graphene, ...
Due to the excellent electronic, optical, thermal, chemical, and mechanical properties of graphene, ...
Graphene is a type of two-dimensional material with special properties and complex mechanical behavi...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
Based on its enticing properties, graphene has been envisioned with applications in the area of elec...
The identification of atomic vacancy defects in graphene is an important and challenging issue, whic...
The vibrational behavior of defected graphene sheets was investigated via finite element analysis. T...
Graphene, a single-atom sheet, has been considered as the most promising material for making future ...
International audienceThe influence of vacancy defects on the electronic and phonon properties of gr...
International audienceThe influence of vacancy defects on the electronic and phonon properties of gr...
Graphene is a carbon based material that has only one atomic layer. It has exceptional electronic an...
We utilize classical molecular dynamics simulations to Investigate the intrinsic loss mechanisms of ...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
Nanoelectromechanical systems (NEMS) have drawn considerable attention towards several sensing appli...