The recent emergence of vertically stacked van der Waals (vdW) heterostructures provides new opportunities for these materials to be employed in a wide range of novel applications. Understanding the interlayer coupling in the stacking geometries of the heterostructures and its effect on the resultant material properties is particularly important for obtaining materials with desirable properties. Here, we report that the atomic bonding between stacked layers and thereby the interlayer properties of the vdW heterostructures can be well tuned by the substrate surface defects using WS2 flakes directly grown on graphene. We show that the defects of graphene have no significant effect on the crystal structure or the quality of the grown WS2 flake...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
We report the novel role of graphene substrates in obstructing the aging propagation in both the bas...
Large-area two-dimensional (2D) heterojunctions are promising building blocks of 2D circuits. Unders...
Van der Waals (vdW) epitaxy allows the fabrication of various heterostructures with dramatically rel...
Since the discovery of graphene in 2004, there has been a tremendous effort in materials science, ph...
Vertical stacking of two-dimensional (2D) crystals has recently attracted substantial interest due t...
The stacking of two-dimensional layered materials, such as semiconducting transition metal dichalcog...
Artificial heterostructures assembled from van der Waals materials promise to combine materials with...
Van der Waals heterostructures (vdWHSs) provide a unique playground to study fundamental physics and...
International audienceVan der Waals heterojunctions composed of graphene and transition metal dichal...
International audienceIn this work, we study growth and migration of atomic defects in MoSe 2 on gra...
The isolation of single layers of van der Waals materials has shown that their properties can be sig...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
The two-dimensional limit of layered materials has recently been realized through the use of van der...
Since graphene became available by a scotch tape technique, a vast class of two-dimensional (2D) van...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
We report the novel role of graphene substrates in obstructing the aging propagation in both the bas...
Large-area two-dimensional (2D) heterojunctions are promising building blocks of 2D circuits. Unders...
Van der Waals (vdW) epitaxy allows the fabrication of various heterostructures with dramatically rel...
Since the discovery of graphene in 2004, there has been a tremendous effort in materials science, ph...
Vertical stacking of two-dimensional (2D) crystals has recently attracted substantial interest due t...
The stacking of two-dimensional layered materials, such as semiconducting transition metal dichalcog...
Artificial heterostructures assembled from van der Waals materials promise to combine materials with...
Van der Waals heterostructures (vdWHSs) provide a unique playground to study fundamental physics and...
International audienceVan der Waals heterojunctions composed of graphene and transition metal dichal...
International audienceIn this work, we study growth and migration of atomic defects in MoSe 2 on gra...
The isolation of single layers of van der Waals materials has shown that their properties can be sig...
We study the interactions in graphene/WS2 2D layered vertical heterostructures with variations in th...
The two-dimensional limit of layered materials has recently been realized through the use of van der...
Since graphene became available by a scotch tape technique, a vast class of two-dimensional (2D) van...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
We report the novel role of graphene substrates in obstructing the aging propagation in both the bas...
Large-area two-dimensional (2D) heterojunctions are promising building blocks of 2D circuits. Unders...