Using angle-resolved photoelectron spectroscopy, we compare the electronic band structure of an ultrathin (1.8 nm) δ-layer of boron-doped diamond with a bulk-like boron doped diamond film (3 μm). Surprisingly, the measurements indicate that except for a small change in the effective mass, there is no significant difference between the electronic structure of these samples, irrespective of their physical dimensionality, except for a small modification of the effective mass. While this suggests that, at the current time, it is not possible to fabricate boron-doped diamond structures with quantum properties, it also means that nanoscale boron doped diamond structures can be fabricated which retain the classical electronic properties of bulk-do...
Thin films of heavily B-doped nanocrystalline diamond (B:NCD) have been investigated by a combinatio...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
We studied the electronic structure evolution of heavily B-doped diamond films across the metal-insu...
Using angle-resolved photoelectron spectroscopy, we compare the electronic band structure of an ultr...
The valence and conduction band electronic structure of boron-doped diamond has been measured using ...
Diamond is a promising metal-free photocatalyst for nitrogen and carbon dioxide reduction in aqueous...
Although diamond is slowly becoming an advanced technology there is con- tradictory information and ...
The effect of quantum confinement, creating a two-dimensional electron gas was studied using angle-r...
The insufficient data on a structure of the boron-doped diamond (BDD) has frustrated efforts to full...
International audienceBoron doped diamond layers have been grown on (110) single crystal diamond sub...
Heavily boron doped diamond epilayers with thicknesses ranging from 40 to less than 2 nm and buried ...
Although significant efforts have been dedicated to optimize the quality of epitaxial diamond layers...
We report on the electronic and optical properties of boron-doped nanocrystalline diamond (NCD) thin...
ABSTRACT: The electronic structure of diamane, a novel material of ultrathin hydrogenated diamond, i...
The electronic structure of boron-hydrogen complex and boron pair in diamond are studied by first-pr...
Thin films of heavily B-doped nanocrystalline diamond (B:NCD) have been investigated by a combinatio...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
We studied the electronic structure evolution of heavily B-doped diamond films across the metal-insu...
Using angle-resolved photoelectron spectroscopy, we compare the electronic band structure of an ultr...
The valence and conduction band electronic structure of boron-doped diamond has been measured using ...
Diamond is a promising metal-free photocatalyst for nitrogen and carbon dioxide reduction in aqueous...
Although diamond is slowly becoming an advanced technology there is con- tradictory information and ...
The effect of quantum confinement, creating a two-dimensional electron gas was studied using angle-r...
The insufficient data on a structure of the boron-doped diamond (BDD) has frustrated efforts to full...
International audienceBoron doped diamond layers have been grown on (110) single crystal diamond sub...
Heavily boron doped diamond epilayers with thicknesses ranging from 40 to less than 2 nm and buried ...
Although significant efforts have been dedicated to optimize the quality of epitaxial diamond layers...
We report on the electronic and optical properties of boron-doped nanocrystalline diamond (NCD) thin...
ABSTRACT: The electronic structure of diamane, a novel material of ultrathin hydrogenated diamond, i...
The electronic structure of boron-hydrogen complex and boron pair in diamond are studied by first-pr...
Thin films of heavily B-doped nanocrystalline diamond (B:NCD) have been investigated by a combinatio...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
We studied the electronic structure evolution of heavily B-doped diamond films across the metal-insu...