Structure evolution during deposition and thermal annealing of amorphous carbon ultrathin films investigated by molecular dynamics simulations
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Title
Structure evolution during deposition and thermal annealing of amorphous carbon ultrathin films investigated by molecular dynamics simulations
Authors
Keywords
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Journal
Scientific Reports
Volume 10, Issue 1, Pages -
Publisher
Springer Science and Business Media LLC
Online
2020-05-15
DOI
10.1038/s41598-020-64625-w
References
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Related references
Note: Only part of the references are listed.- Graphitization of amorphous carbon by swift heavy ion impacts: Molecular dynamics simulation
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- Thermal stability of ultrathin amorphous carbon films synthesized by plasma-enhanced chemical vapor deposition and filtered cathodic vacuum arc
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- The effect of Argon ion irradiation on the thickness and structure of ultrathin amorphous carbon films
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- Carbon films embedded by nickel nanoparticles: The effect of deposition time on Berthelot-type hopping conduction parameters
- (2016) Vali Dalouji et al. European Physical Journal Plus
- Study of electric susceptibility, electrical resistivity and energy loss functions of carbon–nickel composite films at different annealing temperatures
- (2015) V Dalouji et al. PHYSICA SCRIPTA
- Hybridization and tribomechanical properties of ultrathin amorphous carbon films synthesized by radio-frequency low-pressure plasma discharges
- (2015) J. Xie et al. SURFACE & COATINGS TECHNOLOGY
- Friction properties of amorphous carbon ultrathin films deposited by filtered cathodic vacuum arc and radio-frequency sputtering
- (2015) J. Matlak et al. THIN SOLID FILMS
- Atomic and electronic structure of tetrahedral amorphous carbon surfaces from density functional theory: Properties and simulation strategies
- (2014) Miguel A. Caro et al. CARBON
- The effect of deposition energy of energetic atoms on the growth and structure of ultrathin amorphous carbon films studied by molecular dynamics simulations
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- Structural properties and growth evolution of diamond-like carbon films with different incident energies: A molecular dynamics study
- (2013) Xiaowei Li et al. APPLIED SURFACE SCIENCE
- The multilayered structure of ultrathin amorphous carbon films synthesized by filtered cathodic vacuum arc deposition
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- Molecular dynamics simulation for the influence of incident angles of energetic carbon atoms on the structure and properties of diamond-like carbon films
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- Incidence Angle Effect of Energetic Carbon Ions on Deposition Rate, Topography, and Structure of Ultrathin Amorphous Carbon Films Deposited by Filtered Cathodic Vacuum Arc
- (2012) N. Wang et al. IEEE TRANSACTIONS ON MAGNETICS
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- (2012) Deming Huang et al. SURFACE AND INTERFACE ANALYSIS
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