Even weak van der Waals (vdW) adhesion between two-dimensional solids may perturb their various materials properties owing to their low dimensionality. Although the electronic structure of graphene has been predicted to be modified by the vdW interaction with other materials, its optical characterization has not been successful. In this report, we demonstrate that Raman spectroscopy can be utilized to detect a few percent decrease in the Fermi velocity (V-F) of graphene caused by the vdW interaction with underlying hexagonal boron nitride (hBN). Our study also establishes Raman spectroscopic analysis which enables separation of the effects by the vdW interaction from those by mechanical strain or extra charge carriers. The analysis reveals ...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Though pristine graphene exhibits remarkable mechanical and electronic properties, many electromecha...
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...
Even weak van der Waals (vdW) adhesion between two-dimensional solids may perturb their various mate...
In this thesis, magneto-Raman spectroscopy and laser-induced doping experiments on graphene samples ...
Raman spectroscopy has become one of the most important characterization techniques for the rapidly ...
We report on a scanning confocal Raman spectroscopy study investigating the strain-uniformity and th...
In this thesis single- (SLG) and bi-layer (BLG) graphene on hexagonal boron nitride (hBN) are invest...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
2015-01-12This dissertation discusses the Raman spectroscopy of substrate-induced effects on graphen...
We use confocal Raman microscopy and a recently proposed vector analysis scheme to investigate the n...
We perform systematic investigations of transport through graphene on hexagonal boron nitride (hBN) ...
Since the quantum Hall effect of hybrid graphene is impeded by its usual silicon dioxide substrate, ...
In situ electrochemical Raman spectroscopic measurements of defect-free monolayer graphene on variou...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Though pristine graphene exhibits remarkable mechanical and electronic properties, many electromecha...
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...
Even weak van der Waals (vdW) adhesion between two-dimensional solids may perturb their various mate...
In this thesis, magneto-Raman spectroscopy and laser-induced doping experiments on graphene samples ...
Raman spectroscopy has become one of the most important characterization techniques for the rapidly ...
We report on a scanning confocal Raman spectroscopy study investigating the strain-uniformity and th...
In this thesis single- (SLG) and bi-layer (BLG) graphene on hexagonal boron nitride (hBN) are invest...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
International audienceAbstract In this communication, we will illustrate how Raman spectroscopy can ...
2015-01-12This dissertation discusses the Raman spectroscopy of substrate-induced effects on graphen...
We use confocal Raman microscopy and a recently proposed vector analysis scheme to investigate the n...
We perform systematic investigations of transport through graphene on hexagonal boron nitride (hBN) ...
Since the quantum Hall effect of hybrid graphene is impeded by its usual silicon dioxide substrate, ...
In situ electrochemical Raman spectroscopic measurements of defect-free monolayer graphene on variou...
Graphene is an atomically-thin 2-dimentional layer of carbon atoms. Since 2004, it has been attracti...
Though pristine graphene exhibits remarkable mechanical and electronic properties, many electromecha...
This article is a review of our work related to Raman studies of single layer and bilayer graphenes ...