Two-dimensional crystals provide exceptional opportunities for integrating dissimilar materials and forming interfaces where distinct properties and phenomena emerge. To date, research has focused on two basic heterostructure types: vertical van der Waals stacks and laterally joined monolayer crystals with in-plane line interfaces. Much more diverse architectures and interface configurations can be realized in the few-layer and multilayer regime, and if mechanical stacking and single-layer growth are replaced by processes taking advantage of self-organization, conversions between polymorphs, phase separation, strain effects, and shaping into the third dimension. Here, we highlight such opportunities for engineering heterostructures, focusin...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
Van der Waals (vdW) layered materials are an emerging class of materials that can be readily separat...
Two-dimensional van der Waals materials grow into a hot and big field in condensed matter physics in...
Summary: Two-dimensional crystals provide exceptional opportunities for integrating dissimilar mater...
Research on engineered materials that integrate different 2D crystals has largely focused on two pro...
Since the discovery of graphene in 2004, there has been a tremendous effort in materials science, ph...
The two-dimensional limit of layered materials has recently been realized through the use of van der...
Recent attempts to create van der Waals (vdW)-bonded heterostructures of distinct twodimensional (2D...
Vertically stacked atomic layers from different layered crystals can be held together by van der Waa...
Since the discovery of graphene and its outstanding chemical, optical, and mechanical properties, ot...
Semiconductor heterostructures are the fundamental platform for many important device applications s...
Since graphene became available by a scotch tape technique, a vast class of two-dimensional (2D) van...
Vertical van der Waals (vdW) heterostructures of 2D crystals with defined interlayer twist are of in...
The isolation of single layers of van der Waals materials has shown that their properties can be sig...
Vertically stacked atomic layers from different layered crystals can be held together by van der Waa...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
Van der Waals (vdW) layered materials are an emerging class of materials that can be readily separat...
Two-dimensional van der Waals materials grow into a hot and big field in condensed matter physics in...
Summary: Two-dimensional crystals provide exceptional opportunities for integrating dissimilar mater...
Research on engineered materials that integrate different 2D crystals has largely focused on two pro...
Since the discovery of graphene in 2004, there has been a tremendous effort in materials science, ph...
The two-dimensional limit of layered materials has recently been realized through the use of van der...
Recent attempts to create van der Waals (vdW)-bonded heterostructures of distinct twodimensional (2D...
Vertically stacked atomic layers from different layered crystals can be held together by van der Waa...
Since the discovery of graphene and its outstanding chemical, optical, and mechanical properties, ot...
Semiconductor heterostructures are the fundamental platform for many important device applications s...
Since graphene became available by a scotch tape technique, a vast class of two-dimensional (2D) van...
Vertical van der Waals (vdW) heterostructures of 2D crystals with defined interlayer twist are of in...
The isolation of single layers of van der Waals materials has shown that their properties can be sig...
Vertically stacked atomic layers from different layered crystals can be held together by van der Waa...
The advent of graphene, and more recently of two-dimensional (2D) layered materials, has opened new ...
Van der Waals (vdW) layered materials are an emerging class of materials that can be readily separat...
Two-dimensional van der Waals materials grow into a hot and big field in condensed matter physics in...