We report a detailed experimental and theoretical study on the electronic and optical properties of highly boron-substituted (up to 15 at.%) single-wall carbon nanotubes. Core-level electron energy-loss spectroscopy reveals that the boron incorporates into the lattice structure of the tubes, transferring similar to1/2 hole per boron atom into the carbon derived unoccupied density of states. The charge transfer and the calculated Fermi-energy shift in the doped nanotubes evidence that a simple rigid-band model can be ruled out and that additional effects such as charge localization and doping induced band-structure changes play an important role at this high doping levels. In optical absorption a new peak appears at 0.4 eV which is independe...
Abstract. We present ab initio and self-consistent tight-binding calculations on the band structure ...
We determine atomic and electronic structures of arm-chair and zigzag boron nitride nanotubes (BN-NT...
Changes in the electronic structure of multiwalled nanotubes due to the introduction of boron in the...
peer reviewedWe report a detailed experimental and theoretical study on the electronic and optical p...
We report a detailed experimental and theoretical study on the electronic and optical properties of ...
peer reviewedWe present a study of the electronic structure and the optical properties of boron dope...
We present a study of the electronic structure and the optical properties of boron doped single wall...
peer reviewedWe present ab initio and self-consistent tight-binding calculations on the band structu...
The pseudopotential calculations have been performed to study the effect of carbon impurit...
We present ab initio and self-consistent tight-binding calculations on the band structure of single ...
[[abstract]]© 2002 Elsevier-The substitutional placement of boron within the lattice of carbon nanot...
Presentado al XVII International Winterschool Euroconference on Electronic Properties of Novel Mater...
We report atomic level high resolution transmission electron microscopy (HRTEM), electron nanodiffra...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
Abstract. We present ab initio and self-consistent tight-binding calculations on the band structure ...
We determine atomic and electronic structures of arm-chair and zigzag boron nitride nanotubes (BN-NT...
Changes in the electronic structure of multiwalled nanotubes due to the introduction of boron in the...
peer reviewedWe report a detailed experimental and theoretical study on the electronic and optical p...
We report a detailed experimental and theoretical study on the electronic and optical properties of ...
peer reviewedWe present a study of the electronic structure and the optical properties of boron dope...
We present a study of the electronic structure and the optical properties of boron doped single wall...
peer reviewedWe present ab initio and self-consistent tight-binding calculations on the band structu...
The pseudopotential calculations have been performed to study the effect of carbon impurit...
We present ab initio and self-consistent tight-binding calculations on the band structure of single ...
[[abstract]]© 2002 Elsevier-The substitutional placement of boron within the lattice of carbon nanot...
Presentado al XVII International Winterschool Euroconference on Electronic Properties of Novel Mater...
We report atomic level high resolution transmission electron microscopy (HRTEM), electron nanodiffra...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
We present a theoretical study of the optical absorption spectrum of small boron-nitride and carbon ...
Abstract. We present ab initio and self-consistent tight-binding calculations on the band structure ...
We determine atomic and electronic structures of arm-chair and zigzag boron nitride nanotubes (BN-NT...
Changes in the electronic structure of multiwalled nanotubes due to the introduction of boron in the...