International audienceDiamond is a promising metal-free photocatalyst for nitrogen and carbon dioxide reduction in aqueous environment owing to the possibility of emitting highly reducing solvated electrons. However, the wide band gap of diamond necessitates the use of deep UV to trigger a photochemical reaction. Boron doping introduces acceptor levels within the band gap of diamonds, which may facilitate visible-light absorption through defect-based transitions. In this work, unoccupied electronic states from different boron-doped diamond materials, including single crystal, polycrystalline film, diamond foam, and nanodiamonds were probed by soft X-ray absorption spectroscopy at the carbon K edge. Supported by density functional theory cal...
Diamonds approaching the nanoscale have the potential for use as probe materials as their optical pr...
The production of boron-doped diamond nanoparticles enables the application of this material for a b...
Fourier-transform photocurrent spectroscopy (FTPS) was used as a sensitive spectroscopic method to s...
International audienceDiamond is a promising metal-free photocatalyst for nitrogen and carbon dioxid...
The valence and conduction band electronic structure of boron-doped diamond has been measured using ...
Doping diamond with boron, nitrogen or phosphorus enables a fine tuning of its electronic properties...
International audienceDoping diamond with boron, nitrogen or phosphorus enables a fine tuning of its...
Using angle-resolved photoelectron spectroscopy, we compare the electronic band structure of an ultr...
The insufficient data on a structure of the boron-doped diamond (BDD) has frustrated efforts to full...
Substitutional boron in diamond acts as an acceptor center with the ionization energy of about 372 m...
High-excited discrete states of boron hydrogenlike acceptors in crystalline diamond have been measur...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
The methane concentration dependence of the plasma gas phase on surface morphology and boron incorpo...
To analyze the local structure and/or chemical states of boron atoms in boron-doped diamond, which c...
Diamonds approaching the nanoscale have the potential for use as probe materials as their optical pr...
The production of boron-doped diamond nanoparticles enables the application of this material for a b...
Fourier-transform photocurrent spectroscopy (FTPS) was used as a sensitive spectroscopic method to s...
International audienceDiamond is a promising metal-free photocatalyst for nitrogen and carbon dioxid...
The valence and conduction band electronic structure of boron-doped diamond has been measured using ...
Doping diamond with boron, nitrogen or phosphorus enables a fine tuning of its electronic properties...
International audienceDoping diamond with boron, nitrogen or phosphorus enables a fine tuning of its...
Using angle-resolved photoelectron spectroscopy, we compare the electronic band structure of an ultr...
The insufficient data on a structure of the boron-doped diamond (BDD) has frustrated efforts to full...
Substitutional boron in diamond acts as an acceptor center with the ionization energy of about 372 m...
High-excited discrete states of boron hydrogenlike acceptors in crystalline diamond have been measur...
In this paper, the effect of boron doping on the electrical, morphological and structural properties...
The methane concentration dependence of the plasma gas phase on surface morphology and boron incorpo...
To analyze the local structure and/or chemical states of boron atoms in boron-doped diamond, which c...
Diamonds approaching the nanoscale have the potential for use as probe materials as their optical pr...
The production of boron-doped diamond nanoparticles enables the application of this material for a b...
Fourier-transform photocurrent spectroscopy (FTPS) was used as a sensitive spectroscopic method to s...