© 2017 IOP Publishing Ltd. Van der Waals structures based on two-dimensional materials have been considered as promising structures for novel nanoscale electronic devices. Two-dimensional SnO films which display intrinsic p-type semiconducting properties were fabricated recently. In this paper, we consider vertically stacked heterostructures consisting of a SnO monolayer with graphene or a BN monolayer to investigate their stability, electronic and transport properties using density functional theory. The calculated results find that the properties of the constituent monolayers are retained in these SnO-based heterostructures, and a p-type Schottky barrier is formed in the SnO/graphene heterostructure. Additionally, the Schottky barrier can...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
© The Royal Society of Chemistry 2015. The lateral integration of graphene and hexagonal boron nitri...
With a direct bandgap, two-dimensional (2D) ZnSe is a promising semiconductor material in photoelect...
The applicability of graphene in nanoscale devices is somewhat limited because of the absence of a f...
Since the discovery of graphene, a broad range of two-dimensional (2D) materials has captured the at...
Van der Waals (vdW) heterostructures assembled from graphene and hexagonal boron nitride (h-BN) prov...
Electron transport properties through multilayers of hexagonal boron nitride (h-BN) sandwiched betwe...
The successful isolation of single-layer graphene sheet has led to tremendous progress in the discov...
Aluminene, one of the group III elemental monolayers, is predicted to be stable in the honeycomb con...
Electron transport properties through multilayers of hexagonal boron nitride (h-BN) sandwiched betwe...
We report the results of a theoretical study of graphene/BN/graphene and BN/graphene/BN trilayers us...
The geometries and electronic characteristics of the graphene monoxide (GMO) bilayer are predicted v...
Two-dimensional (2D) tin monoxide (SnO) has attracted much attention owing to its distinctive electr...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
Yelgel, Celal/0000-0003-4164-477XWOS: 000465441200044We investigated the structural stability and el...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
© The Royal Society of Chemistry 2015. The lateral integration of graphene and hexagonal boron nitri...
With a direct bandgap, two-dimensional (2D) ZnSe is a promising semiconductor material in photoelect...
The applicability of graphene in nanoscale devices is somewhat limited because of the absence of a f...
Since the discovery of graphene, a broad range of two-dimensional (2D) materials has captured the at...
Van der Waals (vdW) heterostructures assembled from graphene and hexagonal boron nitride (h-BN) prov...
Electron transport properties through multilayers of hexagonal boron nitride (h-BN) sandwiched betwe...
The successful isolation of single-layer graphene sheet has led to tremendous progress in the discov...
Aluminene, one of the group III elemental monolayers, is predicted to be stable in the honeycomb con...
Electron transport properties through multilayers of hexagonal boron nitride (h-BN) sandwiched betwe...
We report the results of a theoretical study of graphene/BN/graphene and BN/graphene/BN trilayers us...
The geometries and electronic characteristics of the graphene monoxide (GMO) bilayer are predicted v...
Two-dimensional (2D) tin monoxide (SnO) has attracted much attention owing to its distinctive electr...
In this work, we study the structural and electronic properties of boron nitride bilayers sandwiched...
Yelgel, Celal/0000-0003-4164-477XWOS: 000465441200044We investigated the structural stability and el...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
© The Royal Society of Chemistry 2015. The lateral integration of graphene and hexagonal boron nitri...
With a direct bandgap, two-dimensional (2D) ZnSe is a promising semiconductor material in photoelect...