We explain the nature of the electronic energy gap and optical absorption spectrum of carbon-boron-nitride (CBN) monolayers using density functional theory, GW and Bethe-Salpeter calculations. The band structure and the optical absorption are regulated by the C domain size rather than the composition (as customary for bulk semiconductor alloys). The C and BN quasiparticle states lie at separate energy for C and BN, with little mixing for energies near the band edge where states are chiefly C in character. The resulting optical absorption spectra show two distinct peaks whose energy and relative intensity vary with composition in agreement with the experiment. The monolayers present strongly bound excitons localized within the C domains, wit...
We theoretically study physical properties of the most promising color center candidates for the rec...
We applied density functional theory (DFT) to investigate structural and electronic properties, as w...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
We explain the nature of the electronic energy gap and optical absorption spectrum of carbon-boron-n...
We explain the nature of the electronic energy gap and optical absorption spectrum of carbon–boron-n...
First-principles calculations have been used to investigate the structural and electronic properties...
© 2020 American Physical Society. We report diffusion quantum Monte Carlo (DMC) and many-body GW cal...
The recent advent of two-dimensional monolayer materials with tunable optical properties and high ca...
The recent advent of two-dimensional monolayer materials with tunable optical properties and high ca...
International audienceHexagonal boron nitride is a large band-gap insulating material which compleme...
© 2021 Elsevier Ltd. All rights reserved.The properties of graphene-like BC6N semiconductor are stud...
Since the rising of graphene, boron nitride monolayers have been deeply studied due to their structu...
Since the isolation of graphene, a single layer of carbon atoms in honeycomb structure, in 2004, thi...
Research on the effect of alternative doping on the photoelectric properties of boron nitride is sti...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
We theoretically study physical properties of the most promising color center candidates for the rec...
We applied density functional theory (DFT) to investigate structural and electronic properties, as w...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
We explain the nature of the electronic energy gap and optical absorption spectrum of carbon-boron-n...
We explain the nature of the electronic energy gap and optical absorption spectrum of carbon–boron-n...
First-principles calculations have been used to investigate the structural and electronic properties...
© 2020 American Physical Society. We report diffusion quantum Monte Carlo (DMC) and many-body GW cal...
The recent advent of two-dimensional monolayer materials with tunable optical properties and high ca...
The recent advent of two-dimensional monolayer materials with tunable optical properties and high ca...
International audienceHexagonal boron nitride is a large band-gap insulating material which compleme...
© 2021 Elsevier Ltd. All rights reserved.The properties of graphene-like BC6N semiconductor are stud...
Since the rising of graphene, boron nitride monolayers have been deeply studied due to their structu...
Since the isolation of graphene, a single layer of carbon atoms in honeycomb structure, in 2004, thi...
Research on the effect of alternative doping on the photoelectric properties of boron nitride is sti...
Using density functional theory with local and non-local exchange and correlation (XC) functionals, ...
We theoretically study physical properties of the most promising color center candidates for the rec...
We applied density functional theory (DFT) to investigate structural and electronic properties, as w...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...