Strong in-plane bonding and weak van der Waals interplanar interactions characterize a large number of layered materials, as epitomized by graphite. The advent of graphene (G), individual layers from graphite, and atomic layers isolated from a few other van der Waals bonded layered compounds has enabled the ability to pick, place, and stack atomic layers of arbitrary compositions and build unique layered materials, which would be otherwise impossible to synthesize via other known techniques. Here we demonstrate this concept for solids consisting of randomly stacked layers of graphene and hexagonal boron nitride (h-BN). Dispersions of exfoliated h-BN layers and graphene have been prepared by liquid phase exfoliation methods and mixed, in var...
We theoretically investigate three-dimensional (3D) layered crystals of alternating graphene and hBN...
Van der Waals heterostructures combining hexagonal boron nitride (h-BN) and graphene offer many pote...
Enthused by the fascinating properties of graphene, we have prepared graphene analogues of BN by a c...
Strong in-plane bonding and weak van der Waals interplanar interactions characterize a large number ...
International audienceStacking various two-dimensional atomic crystals is a feasible approach to cre...
The development of scalable and reliable techniques for the production of the atomically thin layers...
Using graphene on hexagonal boron nitride (hBN) as an example, we introduce the concept of van der W...
The stacking of two-dimensional layered materials, such as semiconducting transition metal dichalcog...
Crystalline films offer various physical properties based on the modulation of their thicknesses and...
Ultrathin dielectric materials prepared by atomic-layer-deposition (ALD) technology are commonly use...
Advancement toward opening a bandgap at the Dirac point induced by symmetry breaking paved the way t...
Graphene has generated an intense amount of interest for nearly a decade, serving as the model 2-dim...
Enthused by the fascinating properties of graphene, we have prepared graphene analogues of BN by a ...
Combining atomically-thin van der Waals materials into heterostructures provides a powerful path tow...
Two-dimensional (2D) materials such as graphene and hexagonal boron nitride (hBN) have attracted sig...
We theoretically investigate three-dimensional (3D) layered crystals of alternating graphene and hBN...
Van der Waals heterostructures combining hexagonal boron nitride (h-BN) and graphene offer many pote...
Enthused by the fascinating properties of graphene, we have prepared graphene analogues of BN by a c...
Strong in-plane bonding and weak van der Waals interplanar interactions characterize a large number ...
International audienceStacking various two-dimensional atomic crystals is a feasible approach to cre...
The development of scalable and reliable techniques for the production of the atomically thin layers...
Using graphene on hexagonal boron nitride (hBN) as an example, we introduce the concept of van der W...
The stacking of two-dimensional layered materials, such as semiconducting transition metal dichalcog...
Crystalline films offer various physical properties based on the modulation of their thicknesses and...
Ultrathin dielectric materials prepared by atomic-layer-deposition (ALD) technology are commonly use...
Advancement toward opening a bandgap at the Dirac point induced by symmetry breaking paved the way t...
Graphene has generated an intense amount of interest for nearly a decade, serving as the model 2-dim...
Enthused by the fascinating properties of graphene, we have prepared graphene analogues of BN by a ...
Combining atomically-thin van der Waals materials into heterostructures provides a powerful path tow...
Two-dimensional (2D) materials such as graphene and hexagonal boron nitride (hBN) have attracted sig...
We theoretically investigate three-dimensional (3D) layered crystals of alternating graphene and hBN...
Van der Waals heterostructures combining hexagonal boron nitride (h-BN) and graphene offer many pote...
Enthused by the fascinating properties of graphene, we have prepared graphene analogues of BN by a c...