Journal of Applied Physics · 2005 · 82 citations · 18 references
EngineeringThin Film Process TechnologySilicon On InsulatorPlasma ProcessingSinx FilmsThin Sinx FilmsThin Film ProcessingMaterials ScienceElectrical EngineeringSurface PassivationSemiconductor Device FabricationPlasma EtchingLow Excitation FrequencySurface ScienceApplied PhysicsSubstrate SurfaceThin FilmsGas Discharge PlasmaSurface ProcessingChemical Vapor Deposition
In this article, we report on the use of direct plasma-enhanced chemical vapor deposited silicon nitride (SiNx) films deposited at low excitation frequency (440 kHz) on low-resistivity (1.5 Ω cm) p-type Czochralski silicon substrate surfaces with different textures, to elucidate the influence of microroughness of the substrate surface on the surface-passivating properties of thin SiNx films. Whereas flat surfaces get the best passivation from Si-rich SiNx films, the optimum passivation shifts towards stoichiometric nitride as the microroughness increases, which points to the increasing relative importance of a charge-induced field effect. When short high-temperature (firing) treatments are applied upon passivation layer deposition, the process window to yield good surface passivation broadens, although very Si-rich films tend to suffer from blistering.
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Ronald A. Sinton, Andrés Cuevas · Applied Physics Letters · 1996 · 1.6K citations
Engineering, Quasi-steady-state Photoconductance, Semiconductor Materials +20
Mark Kerr, Jan Schmidt, A. Cuevas et al. · Journal of Applied Physics · 2001 · 221 citations · Full text