Graphene has extraordinary mechanical and electronic properties, making it a promising material for membrane-based nanoelectromechanical systems (NEMS). Here, chemical-vapor-deposited graphene is transferred onto target substrates to suspend it over cavities and trenches for pressure-sensor applications. The development of such devices requires suitable metrology methods, i.e., large-scale characterization techniques, to confirm and analyze successful graphene transfer with intact suspended graphene membranes. We propose fast and noninvasive Raman spectroscopy mapping to distinguish between free-standing and substrate-supported graphene, utilizing the different strain and doping levels. The technique is expanded to combine two-dimensional a...
The operation of graphene-based nanoelectromechanical systems (NEMS) crucially depends on the local ...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
As a two-dimensional material, graphene shows very good thermal and electrical conductivities, which...
Raman spectroscopy has been used extensively to study graphene and other sp<sup>2</sup>-bonded carbo...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
This work presents a micro-Raman scattering study of undoped suspended graphene membranes. Raman spe...
9siWe present a multi-technique characterisation of graphene grown by chemical vapour deposition (CV...
The successful integration of graphene in future technologies, such as filtration and nanoelectronic...
Graphene is a two-dimensional honey-comb lattice of carbon atoms with very unusual electron energy d...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
The on-surface synthesis of graphene nanoribbons (GNRs) allows for the fabrication of atomically pre...
Strain engineering of graphene has been predicted to change its chemical reactivity, thereby forming...
To achieve high-quality chemical vapor deposition of monolayer graphene electrodes (CVD-MG), appropr...
Graphene is a novel carbon nanomaterial and a great promise for nanotechnology applications in a nea...
The operation of graphene-based nanoelectromechanical systems (NEMS) crucially depends on the local ...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
As a two-dimensional material, graphene shows very good thermal and electrical conductivities, which...
Raman spectroscopy has been used extensively to study graphene and other sp<sup>2</sup>-bonded carbo...
Electrostatic gating offers elegant ways to simultaneously strain and dope atomically thin membranes...
This work presents a micro-Raman scattering study of undoped suspended graphene membranes. Raman spe...
9siWe present a multi-technique characterisation of graphene grown by chemical vapour deposition (CV...
The successful integration of graphene in future technologies, such as filtration and nanoelectronic...
Graphene is a two-dimensional honey-comb lattice of carbon atoms with very unusual electron energy d...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
The on-surface synthesis of graphene nanoribbons (GNRs) allows for the fabrication of atomically pre...
Strain engineering of graphene has been predicted to change its chemical reactivity, thereby forming...
To achieve high-quality chemical vapor deposition of monolayer graphene electrodes (CVD-MG), appropr...
Graphene is a novel carbon nanomaterial and a great promise for nanotechnology applications in a nea...
The operation of graphene-based nanoelectromechanical systems (NEMS) crucially depends on the local ...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
As a two-dimensional material, graphene shows very good thermal and electrical conductivities, which...