Applied Physics Letters · 1997 · 31 citations · 14 references
EngineeringChemistryChemical DepositionNh3 Flow RateChemical EngineeringImpurity DependenceThin Film ProcessingMaterials ScienceMaterials EngineeringPhysicsHigh Purity Nh3Intrinsic ImpurityIngan Bulk FilmsIngan FilmsAmmoniaHydrogenNatural SciencesSurface ScienceApplied PhysicsThin FilmsAmmonia Flow RatesChemical Vapor Deposition
H, C, and O impurity concentrations in metalorganic chemical vapor deposition grown InGaN were found to be dependent on the hydrogen and NH3 flow rates. By increasing the hydrogen flow rate from 0 to 100 sccm, a decrease of greater than two orders of magnitude in the C and O impurity levels and one order of magnitude in the H impurity level was observed. Increasing the NH3 flow rate from 1 to 5 slm results in a decrease in the C concentration and an increase in the H and O concentrations indicating that high purity NH3 (99.999%) can be a significant source of O contamination. Additional studies show that when the InN percent in the InGaN films increases, the impurity concentrations increase regardless of changes in the growth conditions. The InGaN films were grown from 710 to 780 °C and the impurity concentrations were characterized by secondary ion mass spectrometry.
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