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Bias in bonding behavior among boron, carbon, and nitrogen atoms in ion implanted a-BN, a-BC, and diamond like carbon films
- Source :
- Journal of Applied Physics, European Physical Journal: Applied Physics
- Publication Year :
- 2011
-
Abstract
- Cataloged from PDF version of article. In this study, we implanted N(+) and N(2)(+) ions into sputter deposited amorphous boron carbide (a-BC) and diamond like carbon (DLC) thin films in an effort to understand the chemical bonding involved and investigate possible phase separation routes in boron carbon nitride (BCN) films. In addition, we investigated the effect of implanted C(+) ions in sputter deposited amorphous boron nitride (a-BN) films. Implanted ion energies for all ion species were set at 40 KeV. Implanted films were then analyzed using x-ray photoelectron spectroscopy (XPS). The changes in the chemical composition and bonding chemistry due to ion-implantation were examined at different depths of the films using sequential ion-beam etching and high resolution XPS analysis cycles. A comparative analysis has been made with the results from sputter deposited BCN films suggesting that implanted nitrogen and carbon atoms behaved very similar to nitrogen and carbon atoms in sputter deposited BCN films. We found that implanted nitrogen atoms would prefer bonding to carbon atoms in the films only if there is no boron atom in the vicinity or after all available boron atoms have been saturated with nitrogen. Implanted carbon atoms also preferred to either bond with available boron atoms or, more likely bonded with other implanted carbon atoms. These results were also supported by ab-initio density functional theory calculations which indicated that carbon-carbon bonds were energetically preferable to carbon-boron and carbon-nitrogen bonds. (C) 2011 American Institute of Physics.
- Subjects :
- BCN films
X ray photoelectron spectroscopy
General Physics and Astronomy
Carbon-carbon bond
Boron carbide
Nitride
chemistry.chemical_compound
Diamond like carbon
Ion implanted
Nitride Films
Chemical analysis
Carbon nitride
Spectroscopy
Boron atom
XPS analysis
Basis-set
Bonding behavior
N Thin-films
Comparative analysis
Chemical bonds
Chemical bondings
Photoelectron spectroscopy
Carbon film
Ion energies
Total-energy Calculations
Ab initio
Density functional theory calculations
Augmented-wave Method
X-ray-absorption
Amorphous boron
Diamond like carbon films
inorganic chemicals
Ion species
Chemical compositions
Atoms
Materials science
Diamond-like carbon
Nitrogen
Inorganic chemistry
Phase separation
chemistry.chemical_element
Amorphous boron nitride
Nitrides
High resolution
Molecular-dynamics
Boron carbon nitride
Boron
Deposition
Ion beam etching
Ions
Amorphous carbon
Sputter deposition
Hybrid
Implanted nitrogen
Carbon atoms
chemistry
Nitrogen atom
Density functional theory
Amorphous films
Carbon films
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Journal of Applied Physics, European Physical Journal: Applied Physics
- Accession number :
- edsair.doi.dedup.....3c8cc3e6d6511cce8409e9bc0fd3bdff