Two new Raman modes below 100 cm<sup>–1</sup> are observed in twisted bilayer graphene grown by chemical vapor deposition. The two modes are observed in a small range of twisting angle at which the intensity of the G Raman peak is strongly enhanced, indicating that these low energy modes and the G Raman mode share the same resonance enhancement mechanism, as a function of twisting angle. The ∼94 cm<sup>–1</sup> mode (measured with a 532 nm laser excitation) is assigned to the fundamental layer breathing vibration (ZO′ mode) mediated by the twisted bilayer graphene lattice, which lacks long-range translational symmetry. The dependence of this mode’s frequency and line width on the rotational angle can be explained by the double resonance Ram...
Graphene and its hybrids have stimulated significant scientific interest owing to their unique prope...
Stacking disorder will significantly modify the optical properties and interlayer coupling stretch o...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...
ABSTRACT: Two new Raman modes below 100 cm−1 are observed in twisted bilayer graphene grown by chemi...
Two new Raman modes below 100 cm(-1) are observed in twisted bilayer graphene grown by chemical vapo...
A systematic experimental Raman spectroscopic study of twisted bilayer graphene (tBLG) domains local...
In this work we study the Raman spectra of twisted bilayer graphene samples, with different twisting...
ABSTRACT: Few-layer graphene is a prototypical layered material, whose properties are determined by ...
Raman spectroscopy is the prime nondestructive characterization tool for graphene and related layere...
Few-layer graphene is a prototypical layered material, whose properties are determined by the relati...
The G-band Raman intensity is calculated for twisted bilayer graphene as a function of laser excitat...
Bernal- and non-Bernal-stacked graphene layers have been systematically studied by Raman imaging and...
This work reports a Raman study of graphene bilayer samples grown by chemical vapor deposition on a ...
Stacking disorder will significantly modify the optical properties and interlayer coupling stretch o...
Twisted bilayer graphene is created by slightly rotating the two crystal networks in bilayer graphen...
Graphene and its hybrids have stimulated significant scientific interest owing to their unique prope...
Stacking disorder will significantly modify the optical properties and interlayer coupling stretch o...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...
ABSTRACT: Two new Raman modes below 100 cm−1 are observed in twisted bilayer graphene grown by chemi...
Two new Raman modes below 100 cm(-1) are observed in twisted bilayer graphene grown by chemical vapo...
A systematic experimental Raman spectroscopic study of twisted bilayer graphene (tBLG) domains local...
In this work we study the Raman spectra of twisted bilayer graphene samples, with different twisting...
ABSTRACT: Few-layer graphene is a prototypical layered material, whose properties are determined by ...
Raman spectroscopy is the prime nondestructive characterization tool for graphene and related layere...
Few-layer graphene is a prototypical layered material, whose properties are determined by the relati...
The G-band Raman intensity is calculated for twisted bilayer graphene as a function of laser excitat...
Bernal- and non-Bernal-stacked graphene layers have been systematically studied by Raman imaging and...
This work reports a Raman study of graphene bilayer samples grown by chemical vapor deposition on a ...
Stacking disorder will significantly modify the optical properties and interlayer coupling stretch o...
Twisted bilayer graphene is created by slightly rotating the two crystal networks in bilayer graphen...
Graphene and its hybrids have stimulated significant scientific interest owing to their unique prope...
Stacking disorder will significantly modify the optical properties and interlayer coupling stretch o...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...