Gas-phase kinetics during diamond growth: CH4 as-growth species
- 15 April 1989
- journal article
- conference paper
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 65 (8) , 3044-3048
- https://doi.org/10.1063/1.342696
Abstract
We have used a one‐dimensional kinetic analysis to model the gas‐phase chemistry that occurred during the diamond growth experiments of Chauhan, Angus, and Gardner [J. Appl. Phys. 4 7, 4746 (1976)]. In those experiments the weight of diamond seed crystals heated by lamps in a CH4/H2 environment was monitored by a microbalance. No filament or electric discharge was present. Our analysis shows that diamond growth occurred in this system by direct reaction of CH4 on the diamond surface. C2H2 and CH3, which have been proposed as diamond growth species, played no significant role there, although our results do not address their possible contributions in other systems such as filament‐ or plasma‐assisted diamond growth.This publication has 15 references indexed in Scilit:
- Energetics of acetylene-addition mechanism of diamond growthThe Journal of Physical Chemistry, 1988
- Measurement of stable species present during filament-assisted diamond growthApplied Physics Letters, 1988
- Low-Pressure, Metastable Growth of Diamond and "Diamondlike" PhasesScience, 1988
- Formation of small aromatic molecules in a sooting ethylene flameCombustion and Flame, 1988
- Synthesis of Diamond Under Metastable ConditionsAnnual Review of Materials Science, 1987
- The Importance of the Positively Charged Surface for the Epitaxial Growth of Diamonds at Low PressureJapanese Journal of Applied Physics, 1987
- Kinetic modeling and sensitivity analysis of nitrogen oxide formation in well-stirred reactorsCombustion and Flame, 1986
- Chemical kinetics of the high pressure oxidation of n-butane and its relation to engine knockCombustion and Flame, 1986
- Chemical Kinetics of Soot Particle GrowthAnnual Review of Physical Chemistry, 1985
- Combustion of methane in fuel-rich mixturesCombustion and Flame, 1978