Edge contacts between two-dimensional (2D) materials in the in-plane direction can achieve minimal contact area and low contact resistance, producing atomically thin devices with improved performance. Particularly, lateral heterojunctions of metallic graphene and semiconducting transition metal dichalcogenides (TMDs) exhibit small Schottky barrier heights due to graphene's low work-function. However, issues exist with the fabrication of highly transparent and flexible multi-functional devices utilizing lateral heterostructures (HSs) of graphene and TMDs via spatially controlled growth. This review demonstrates the growth and electronic applications of lateral HSs of graphene and TMDs, highlighting key technologies controlling the wafer...
Since it was first demonstrated that graphene could be successfully exfoliated from a graphite flake...
A family of materials similar to graphene are transition metal dichalcogenides (TMDs) which have eme...
Two-dimensional (2D) materials are drawing growing attention for next-generation electronics and opt...
Lateral heterostructures with planar integrity form the basis of two-dimensional (2D) electronics an...
This article reviews optoelectronic devices based on graphene and related two-dimensional (2D) mater...
Research on two-dimensional nanomaterials has become a topic of considerable interest since the pion...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
Two-dimensional material such as graphene is reported to be outstanding example with remarkable prop...
Two-dimensional (2D) materials have generated great interest in the past few years as a new toolbox ...
Precise spatial control over the electrical properties of thin films is the key capability enabling ...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
Lateral heterostructures with planar integrity form the basis of two-dimensional (2D) electronics an...
Atomically thin heterostructures of transition-metal dichalcogenides (TMDs) with various geometrical...
Ultrathin lateral heterostructures of monolayer MoS2 and WS2 have successfully been realized with th...
Since it was first demonstrated that graphene could be successfully exfoliated from a graphite flake...
A family of materials similar to graphene are transition metal dichalcogenides (TMDs) which have eme...
Two-dimensional (2D) materials are drawing growing attention for next-generation electronics and opt...
Lateral heterostructures with planar integrity form the basis of two-dimensional (2D) electronics an...
This article reviews optoelectronic devices based on graphene and related two-dimensional (2D) mater...
Research on two-dimensional nanomaterials has become a topic of considerable interest since the pion...
We show that reducing the degree of van der Waals overlapping in all 2D ultrathin lateral devices co...
Two-dimensional material such as graphene is reported to be outstanding example with remarkable prop...
Two-dimensional (2D) materials have generated great interest in the past few years as a new toolbox ...
Precise spatial control over the electrical properties of thin films is the key capability enabling ...
The discovery of graphene has so far drawn significant attentions since 2004 when isolation of singl...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
Lateral heterostructures with planar integrity form the basis of two-dimensional (2D) electronics an...
Atomically thin heterostructures of transition-metal dichalcogenides (TMDs) with various geometrical...
Ultrathin lateral heterostructures of monolayer MoS2 and WS2 have successfully been realized with th...
Since it was first demonstrated that graphene could be successfully exfoliated from a graphite flake...
A family of materials similar to graphene are transition metal dichalcogenides (TMDs) which have eme...
Two-dimensional (2D) materials are drawing growing attention for next-generation electronics and opt...