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Effect of XRD relative intensities of the Li (002) on surface, optical and electrochemical impedance spectroscopy analyses of the deposited LiCoO2 thin film 

Yudar H.H.; Pat S.; Özen S.; Şenay V.; Korkmaz Ş.; Pat Z. (Springer New York LLC, 2017)
In this paper, the effect of RF power on LiCoO2 thin films was investigated using X-ray diffractometer (XRD), atomic force microscopy, UV–Vis spectrophotometer, and potentiostat. The microstructural, surface, optical and ...

Zn/ZnSe thin films deposition by RF magnetron sputtering 

Yudar H.H.; Pat S.; Korkmaz Ş.; Özen S.; Şenay V. (Springer New York LLC, 2017)
In this paper, Zn/ZnSe thin films were deposited on glass substrates by RF magnetron sputtering system. XRD analyses were done. Zn and ZnSe phases were obtained. Miller indices of obtained Zn phases were detected in (320), ...

The substrate effect on Ge doped GaN thin films coated by thermionic vacuum arc 

Özen S.; Korkmaz Ş.; Şenay V.; Pat S. (Springer New York LLC, 2017)
This study focuses on characterization and understanding of the substrate effect on Ge doped GaN thin films coated onto transparent substrates. The produced films were deposited onto unheated glass and unheated polyethylene ...

Morphology, composition, structure and optical properties of CuO/Cu2O thin films prepared by RF sputtering method 

Korkmaz Ş.; Geçici B.; Korkmaz S.D.; Mohammadigharehbagh R.; Pat S.; Özen S.; Şenay V.; Yudar H.H. (Elsevier Ltd, 2016)
In this paper, copper oxide (CuO/Cu2O) nanocrystalline thin films were deposited by radio frequency (RF) magnetron sputtering system at 75 W and 100 W. The surface, optical, composition and structural properties of obtaining ...

Surface and optical properties of indium tin oxide layer deposition by RF magnetron sputtering in argon atmosphere 

Yudar H.H.; Korkmaz Ş.; Özen S.; Şenay V.; Pat S. (Springer Verlag, 2016)
This study focused on the characterization and properties of transparent and conductive indium tin oxide (ITO) thin films deposited in argon atmosphere. ITO thin films were coated onto glass substrates by radio frequency ...

Optical, morphological properties and surface energy of the transparent Li4Ti5O12 (LTO) thin film as anode material for secondary type batteries 

Özen S.; Şenay V.; Pat S.; Korkmaz Ş. (Institute of Physics Publishing, 2016)
LTO thin film was deposited for the first time on a glass microscope slide (MS) by RF magnetron sputtering technology. This method has been suitable for preparation of high-quality thin films. The surface properties of the ...

Characterization of a fast grown GaAs:Sn thin film by thermionic vacuum arc 

Özen S.; Şenay V.; Pat S.; Korkmaz Ş. (Springer New York LLC, 2015)
In this research, a tin doped gallium arsenide thin film was grown on a glass substrate by means of the TVA technique in a very short period of time (70 s) and it’s morphological, compositional, and optical properties were ...

GaN thin film deposition on glass and PET substrates by thermionic vacuum arc (TVA) 

Pat S.; Korkmaz Ş.; Özen S.; Şenay V. (Elsevier Ltd, 2015)
In this paper, GaN thin film production was realized by thermionic vacuum arc (TVA), a plasma deposition technique, for the first time. We present a new deposition mechanism for GaN thin films with a very short production ...

Some physical properties of the SiGe thin film coatings by thermionic vacuum arc (TVA) 

Özen S.; Pat S.; Şenay V.; Korkmaz Ş.; Geçici B. (American Scientific Publishers, 2015)
SiGe thin films were deposited on glass and PET substrate by the thermionic vacuum arc (TVA) method for the first time. TVA is an anodic plasma generator which works in high vacuum conditions. Highly pure and quality films ...

ZnO thin film synthesis by reactive radio frequency magnetron sputtering 

Şenay V.; Pat S.; Korkmaz Ş.; Aydo?muş T.; Elmas S.; Özen S.; Ekem N.; Balba? M.Z. (Elsevier B.V., 2014)
In this study, ZnO thin films were deposited on glass substrates by reactive RF magnetron sputtering method at argon-oxygen gas mixing (1:1) atmosphere. Some properties of the synthesized films were investigated by ...



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