A continuum membrane model is presented to describe the pull-in instability and eigenfrequency variations of a graphene resonator under an electrostatic loading. The pull-in instability leads to the device failure and the eigenfrequency variation determines its frequency tuning range, which are among the most important aspects in a micro/nanomechanical resonator design. The von Karman kinematic assumptions are used for the membrane large deflection. The geometric nonlinearity resulting from a large deflection and the physical nonlinearity resulting from an electrostatic loading are the two competing mechanisms: the geometric nonlinearity stiffens the membrane structure and the physical nonlinearity softens it. The effects of these two compe...
The electrical actuation of suspended membrane nanomechanical resonators incorporated into a laser i...
This paper examines the pull-in characteristics of initially curved microelectromechanical resonator...
Graphene, a carbon-based two-dimensional material, has remarkable electrical and mechanical properti...
In the last decade, graphene membranes have drawn tremendous attention due to their potential applic...
We study circular nanomechanical graphene resonators by means of continuum elasticity theory, treati...
In the last decade, graphene membranes have drawn tremendous attention due to their potential applic...
Nanomechanical resonators made from graphene are widely researched for their potential applications ...
We theoretically analyze the dynamics of a suspended graphene membrane which is in tunnel contact wi...
As we are moving towards nano level devices, there is a greater need to miniaturize resonators. Mini...
From sensing perspective, smaller electromechanical devices, in general, are expected to be more res...
Ever since its inception, graphene has been the subject of research in many parts of theworld. This ...
In this article, we report on a comprehensive modeling study of frequency tuning of graphene resonan...
This thesis concerns describing the mechanical properties of the two dimensional material graphene b...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
This paper examines the pull-in characteristics of initially curved microelectromechanical resonator...
The electrical actuation of suspended membrane nanomechanical resonators incorporated into a laser i...
This paper examines the pull-in characteristics of initially curved microelectromechanical resonator...
Graphene, a carbon-based two-dimensional material, has remarkable electrical and mechanical properti...
In the last decade, graphene membranes have drawn tremendous attention due to their potential applic...
We study circular nanomechanical graphene resonators by means of continuum elasticity theory, treati...
In the last decade, graphene membranes have drawn tremendous attention due to their potential applic...
Nanomechanical resonators made from graphene are widely researched for their potential applications ...
We theoretically analyze the dynamics of a suspended graphene membrane which is in tunnel contact wi...
As we are moving towards nano level devices, there is a greater need to miniaturize resonators. Mini...
From sensing perspective, smaller electromechanical devices, in general, are expected to be more res...
Ever since its inception, graphene has been the subject of research in many parts of theworld. This ...
In this article, we report on a comprehensive modeling study of frequency tuning of graphene resonan...
This thesis concerns describing the mechanical properties of the two dimensional material graphene b...
I summarize the results of my research in the subjects of nonlinear mechanics of grapheneresonators,...
This paper examines the pull-in characteristics of initially curved microelectromechanical resonator...
The electrical actuation of suspended membrane nanomechanical resonators incorporated into a laser i...
This paper examines the pull-in characteristics of initially curved microelectromechanical resonator...
Graphene, a carbon-based two-dimensional material, has remarkable electrical and mechanical properti...