Using first-principles calculations, we report a large band-gap opening in the van der Waals heterostructure of graphene and graphane (hydrogenated graphene) under normal compressive (NC) strain. In the presence of graphane, interlayer charge transfer from graphene to graphane triggers the intralayer charge redistribution in graphene, breaking the equivalence of the two sublattices. This chiral symmetry breaking, however, is not strong enough to split the Dirac cone. The application of the NC strain enhances the inter-and intralayer charge transfer leading to a splitting of the Dirac cone, reflected as a redshift of the G peak in Raman spectra. With strain, the band gap increases monotonically and attains a maximum of 0.74 eV at 20% strain,...
Based on first-principles calculations, we resent a method to reveal the elastic properties of recen...
Hexagonal boron nitride substrates have been shown to dramatically improve the electric properties o...
This thesis aims to study the nonlinear electrical transport response of monolayer and bilayer graph...
6,6,12-graphyne, one of the two-dimensional carbon allotropes with the rectangular lattice structure...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
International audienceGraphene is the two-dimensional building block for carbon allotropes of every ...
Sublattice symmetry breaking has been identified as the necessary condition for bandgap opening in m...
International audienceWe demonstrate that stacking layered materials allows a novel type of strain e...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
We study the vibrational properties of graphene under combined shear and uniaxial tensile strain usi...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
Strain-induced graphenephonon softening and phonon band splitting are indeed fascinating, which were...
We study the effect of strain on the band engineering in gapped graphene subject to external sources...
The tight-binding model is used to inquire the uniaxial strain effect on the electronic structure o...
Based on first-principles calculations, we resent a method to reveal the elastic properties of recen...
Hexagonal boron nitride substrates have been shown to dramatically improve the electric properties o...
This thesis aims to study the nonlinear electrical transport response of monolayer and bilayer graph...
6,6,12-graphyne, one of the two-dimensional carbon allotropes with the rectangular lattice structure...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
International audienceGraphene is the two-dimensional building block for carbon allotropes of every ...
Sublattice symmetry breaking has been identified as the necessary condition for bandgap opening in m...
International audienceWe demonstrate that stacking layered materials allows a novel type of strain e...
The analysis of the electronic properties of strained or lattice deformed graphene combines ideas fr...
We study the vibrational properties of graphene under combined shear and uniaxial tensile strain usi...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
We uncover the constitutive relation of graphene and probe the physics of its optical phonons by stu...
Strain-induced graphenephonon softening and phonon band splitting are indeed fascinating, which were...
We study the effect of strain on the band engineering in gapped graphene subject to external sources...
The tight-binding model is used to inquire the uniaxial strain effect on the electronic structure o...
Based on first-principles calculations, we resent a method to reveal the elastic properties of recen...
Hexagonal boron nitride substrates have been shown to dramatically improve the electric properties o...
This thesis aims to study the nonlinear electrical transport response of monolayer and bilayer graph...