Sputter Deposition

Radio frequency sputtered Al:ZnO-Ag transparent conductor: A plasmonic nanostructure with enhanced optical and electrical properties

Engineering / Plasmonics / Applied Physics / Fractals / Ellipsometry / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition

Radio frequency sputtered Al:ZnO-Ag transparent conductor: A plasmonic nanostructure with enhanced optical and electrical properties

Engineering / Plasmonics / Applied Physics / Fractals / Ellipsometry / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition

Platinum silicide phase transformations controlled by a nanometric interfacial oxide layer

Engineering / Technology / Transmission Electron Microscopy / Thin Films / High Resolution Transmission Electron Microscopy / Si / Physical sciences / PT / Interfaces / Interface / Saed / Phase Transformation / Silicon Oxide / Epitaxy / Thin Solid Films / HRTEM / Thermal annealing / Sputter Deposition / Electric Conductivity / Si / Physical sciences / PT / Interfaces / Interface / Saed / Phase Transformation / Silicon Oxide / Epitaxy / Thin Solid Films / HRTEM / Thermal annealing / Sputter Deposition / Electric Conductivity

Radio frequency sputtered Al:ZnO-Ag transparent conductor: A plasmonic nanostructure with enhanced optical and electrical properties

Engineering / Plasmonics / Applied Physics / Fractals / Ellipsometry / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition / Mathematical Sciences / Physical sciences / Tuning / Wide Band Gap Semiconductors / Sputter Deposition
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