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Highly transparent and conductive AlN /Ag/ AlN thin films were prepared by magnetron sputtering on glass and PET substrates at room temperature. The AlN /Ag/ AlN thin films on glass showed a wide ...
. Improvements in the crystallization properties , surface morphology and optical properties of the films were studied. The results indicate that EFMS can be a useful technique for preparing high-quality thin films ...
In last years considerable interest has been shown in aluminium nitride ( AlN ) films because of their optical , electrical, dielectric and acoustic properties . Owing to these characteristics, AlN thin ...
photoelectron spectroscopy (XPS). The optical transmission properties of the AlN -coated glass were investigated using an ultraviolet/visible (UV/VIS) spectrophotometer. It was found that the thin films ...
properties . AlN thin films find applications in electronic as well as optoelectronic devices due to their large bandgap energy 2. Experimental procedure (6.2 eV), as optical films due to their high refractive ...
AlN and Carbon-doped AlN (C- AlN ) thin films were grown on metal substrates (Cu and Al) and heat sink by RF coupled DC sputtering. The thermal transient measurement was recorded for the given Light ...
We report the optical and magnetic properties of Sm doped wide-band-gap Gallium nitride (GaN) prepared by ion implantation. The photoluminescence (PL) intensity obviously increased as the increasing ...
films is demonstrated. The structural, optical and electrical properties of the films are investigated, and may be of interest for many technological applications . By Hongmei Luo,* Yuan Lin, Haiyan Wang ...
electrical and optical properties of LEDs on Si has not yet been clarified. For the assessment of the device performance, it is important to obtain the electrical properties of the actual heterostructure ...
accord with the nominal composition. sample preparation , scanning transmission electron microscopy, Z-contrast imaging Introduction Group-III-nitride semiconductors such as AlN , GaN and InN ...
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