peer reviewedVan der Waals layered materials with well-defined twist angles between the crystal lattices of individual layers have attracted increasing attention due to the emergence of unexpected material properties. As many properties critically depend on the exact twist angle and its spatial homogeneity, there is a need for a fast and non-invasive characterization technique of the local twist angle, to be applied preferably right after stacking. We demonstrate that confocal Raman spectroscopy can be utilized to spatially map the twist angle in stacked bilayer graphene for angles between 6.5 and 8 degree when using a green excitation laser. The twist angles can directly be extracted from the moiré superlattice-activated Raman scattering p...
The electronic band structure of twisted bilayer graphene develops van Hove singularities whose ener...
Monolayer transition metal dichalcogenides have strong intracovalent bonding. When stacked in multil...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...
peer reviewedVan der Waals layered materials with well-defined twist angles between the crystal latt...
ABSTRACT: Few-layer graphene is a prototypical layered material, whose properties are determined by ...
Few-layer graphene is a prototypical layered material, whose properties are determined by the relati...
Twisted 2D layered materials have garnered a lot of attention recently as a class of 2D materials wh...
With the increasing interest in twisted bilayer graphene (tBLG) of the past years, fast, reliable, a...
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<sup>–1</sup> are observed in twisted bilayer graphene grown by chem...
Twisted bilayer graphene is created by slightly rotating the two crystal networks in bilayer graphen...
Two new Raman modes below 100 cm(-1) are observed in twisted bilayer graphene grown by chemical vapo...
The ability to isolate single atomic layers of van der Waals materials has led to renewed interest i...
Twisted 2D bilayer materials are created by artificial stacking of two monolayer crystal networks of...
Topographic corrugations, such as wrinkles, are known to introduce diverse physical phenomena that c...
The electronic band structure of twisted bilayer graphene develops van Hove singularities whose ener...
Monolayer transition metal dichalcogenides have strong intracovalent bonding. When stacked in multil...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...
peer reviewedVan der Waals layered materials with well-defined twist angles between the crystal latt...
ABSTRACT: Few-layer graphene is a prototypical layered material, whose properties are determined by ...
Few-layer graphene is a prototypical layered material, whose properties are determined by the relati...
Twisted 2D layered materials have garnered a lot of attention recently as a class of 2D materials wh...
With the increasing interest in twisted bilayer graphene (tBLG) of the past years, fast, reliable, a...
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<sup>–1</sup> are observed in twisted bilayer graphene grown by chem...
Twisted bilayer graphene is created by slightly rotating the two crystal networks in bilayer graphen...
Two new Raman modes below 100 cm(-1) are observed in twisted bilayer graphene grown by chemical vapo...
The ability to isolate single atomic layers of van der Waals materials has led to renewed interest i...
Twisted 2D bilayer materials are created by artificial stacking of two monolayer crystal networks of...
Topographic corrugations, such as wrinkles, are known to introduce diverse physical phenomena that c...
The electronic band structure of twisted bilayer graphene develops van Hove singularities whose ener...
Monolayer transition metal dichalcogenides have strong intracovalent bonding. When stacked in multil...
Bilayer graphene with a twist angle θ between the layers generates a superlattice structure known as...