We have studied boron nitride monolayer and bilayer band structures. For bilayers, the ground-state energies of the different five stackings are computed using DFT in order to determine the most stable configuration. Also, the interlayer distance for the five different types of stacking in which boron-nitride bilayers can be found is determined. Using a minimal tight-binding model for the band structures of boron nitride bilayers, the hopping parameters and the on-site energies have been extracted by fitting a tight-binding empirical model to the DFT results.Fundação para a Ciência e a Tecnologia (FCT),COMPET
Atomically thin boron nitride (BN) nanosheets are important two-dimensional nanomaterials with many ...
Hexagonal boron nitride is a large band-gap insulating material which complements the electronic and...
International audienceBoron nitride single layer belongs to the family of 2D materials whose optical...
The interlayer sliding energy landscape of hexagonal boron nitride (h-BN) is investigated via a van ...
Since graphene was isolated in 2004, the number of two-dimensional (2D) materials and their scientif...
In this article we explore methods to reduce the computational cost in many-electron wave function e...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
We explore the properties of systems composed of two or three layers of graphene and hexagonal boron...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
Hexagonal boron nitride () is the isoelectronic but insulating counterpart of graphene. Like graphen...
First-principles calculations have been used to investigate the structural and electronic properties...
The interlayer interaction in graphene/boron-nitride heterostructures is studied using density funct...
We use a tight-binding approach and density functional theory calculations to study the band structu...
Hexagonal boron nitride is a large band gap layered crystal, frequently incorporated in van der Waal...
The III-nitride semiconductors are known for their excellent extrinsic properties like direct bandga...
Atomically thin boron nitride (BN) nanosheets are important two-dimensional nanomaterials with many ...
Hexagonal boron nitride is a large band-gap insulating material which complements the electronic and...
International audienceBoron nitride single layer belongs to the family of 2D materials whose optical...
The interlayer sliding energy landscape of hexagonal boron nitride (h-BN) is investigated via a van ...
Since graphene was isolated in 2004, the number of two-dimensional (2D) materials and their scientif...
In this article we explore methods to reduce the computational cost in many-electron wave function e...
Defence is held on 11.6.2021 15:00 – 19:00 Zoom, https://aalto.zoom.us/j/66334552243Hexagonal bor...
We explore the properties of systems composed of two or three layers of graphene and hexagonal boron...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
Hexagonal boron nitride () is the isoelectronic but insulating counterpart of graphene. Like graphen...
First-principles calculations have been used to investigate the structural and electronic properties...
The interlayer interaction in graphene/boron-nitride heterostructures is studied using density funct...
We use a tight-binding approach and density functional theory calculations to study the band structu...
Hexagonal boron nitride is a large band gap layered crystal, frequently incorporated in van der Waal...
The III-nitride semiconductors are known for their excellent extrinsic properties like direct bandga...
Atomically thin boron nitride (BN) nanosheets are important two-dimensional nanomaterials with many ...
Hexagonal boron nitride is a large band-gap insulating material which complements the electronic and...
International audienceBoron nitride single layer belongs to the family of 2D materials whose optical...