Journal of Physics D Applied Physics · 1997 · 11 citations · 6 references
EngineeringChemistryChemical DepositionElastic ScatteringGrowth RateLarge DeviationThin Film ProcessingMaterials ScienceMaterials EngineeringPhysicsNanotechnologyCopper FilmsElemental MetalMicrostructureSurface CharacterizationMaterial AnalysisNanomaterialsNatural SciencesSurface ScienceApplied PhysicsThin FilmsChemical VapourChemical Vapor Deposition
The resistivity of copper films grown by varying the pressure, and hence the growth rate, in metalorganic chemical vapour deposition has been studied in the temperature range 4.2 K - 300 K. The films exhibit a fairly high (300 K) of 8 - 20 cm. Analysis of the temperature variation of shows that the high values are not just caused by elastic scattering from the impurities but the temperature dependence of is also very high, resulting in a large deviation from Matthiessen's rule (DMR) in these films. This strong dependence on temperature and DMR has been explained in a semi-quantitative manner as arising from grain boundary (GB) and surface scattering (SS). This is corroborated by STM studies on the films which show that films having a smooth surface and well connected grains have a lower as opposed to films with poor connectivity.
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Deviations from Matthiessen's Rule
J. Bass · Advances In Physics · 1972 · 346 citations
Materials Science, Anomalous Negative Deviations, Engineering +15