Crystallographic orientations of early multi-lobe graphene domains in CVD-grown graphene are investigated. Partially grown graphene domains were transferred onto flexible substrates and uniaxial tensile strain was applied. From the polarization dependence of the Raman G band, split due to strain, the crystallographic orientation was determined. It was found that there are some single crystal domains. However, lobes have different orientations in some other multi-lobe domains. Within a given lobe, the orientation does not change as the domain grows, indicating that the orientations present in a graphene domain are determined at an early stage of growth
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene has potential in a variety of applications, including strain-engineering electronics and se...
Graphene is a kind of typical two-dimensional material consisting of pure carbon element. The unique...
Graphene edges are of particular interest since their orientation determines the electronic properti...
We present a systematic study in investigating the orientation characteristics of pentacene molecule...
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...
AbstractPolarized Raman spectroscopy has been employed to characterize transverse sections of graphe...
International audienceGraphene is the two-dimensional building block for carbon allotropes of every ...
Understanding the growth mechanism of graphene layers in chemical vapor deposition (CVD) and their c...
We systematically investigate the impact of granularity in CVD graphene films by performing Raman ma...
Due to its inherent exceptional mechanical flexibility and strength, graphene provides an ideal plat...
The presented work summarizes various aspects of uniaxial deformation in monolayer graphene studied ...
A systematic experimental Raman spectroscopic study of twisted bilayer graphene (tBLG) domains local...
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene has potential in a variety of applications, including strain-engineering electronics and se...
Graphene is a kind of typical two-dimensional material consisting of pure carbon element. The unique...
Graphene edges are of particular interest since their orientation determines the electronic properti...
We present a systematic study in investigating the orientation characteristics of pentacene molecule...
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...
AbstractPolarized Raman spectroscopy has been employed to characterize transverse sections of graphe...
International audienceGraphene is the two-dimensional building block for carbon allotropes of every ...
Understanding the growth mechanism of graphene layers in chemical vapor deposition (CVD) and their c...
We systematically investigate the impact of granularity in CVD graphene films by performing Raman ma...
Due to its inherent exceptional mechanical flexibility and strength, graphene provides an ideal plat...
The presented work summarizes various aspects of uniaxial deformation in monolayer graphene studied ...
A systematic experimental Raman spectroscopic study of twisted bilayer graphene (tBLG) domains local...
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene films grown by vapour deposition tend to be polycrystalline due to the nucleation and growt...
Graphene has potential in a variety of applications, including strain-engineering electronics and se...