Ç. Güçlü Et Al. , "A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements," JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28, 2023
Güçlü, Ç. Et Al. 2023. A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28 .
Güçlü, Ç., Tanrıkulu, E., Dere, A., ALTINDAL, Ş., & AZIZIAN-KALANDARAGH, Y., (2023). A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28.
Güçlü, Ç.Ş. Et Al. "A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements," JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28, 2023
Güçlü, Ç.Ş. Et Al. "A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements." JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28, 2023
Güçlü, Ç. Et Al. (2023) . "A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements." JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS , vol.34, no.28.
@article{article, author={Ç.Ş. Güçlü Et Al. }, title={A comparison of electrical characteristics of the Au/n-Si Schottky diodes with (ZnCdS:GO(1:1) and (ZnCdS:GO(1:0.5) doped PVP interlayer using current-voltage (I-V) and impedance-voltage (Z-V) measurements}, journal={JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS}, year=2023}