H. Sürel Et Al. , "Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method," International Congress on Chemistry and Material Science , pp.281, 2017
Sürel, H. Et Al. 2017. Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method. International Congress on Chemistry and Material Science , 281.
Sürel, H., Karaduman, I., Çorlu, T., YILDIRIM, M. A., ATEŞ, A., & ACAR, S., (2017). Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method . International Congress on Chemistry and Material Science (pp.281).
Sürel, Hakan Et Al. "Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method," International Congress on Chemistry and Material Science, 2017
Sürel, Hakan Et Al. "Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method." International Congress on Chemistry and Material Science , pp.281, 2017
Sürel, H. Et Al. (2017) . "Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method." International Congress on Chemistry and Material Science , p.281.
@conferencepaper{conferencepaper, author={Hakan Sürel Et Al. }, title={Effect of Film Thickness on No Gas Sensing Properties of Ni-Doped Zno Thin Film Grown by Successive Ionic Layer Adsorption and Reaction Method}, congress name={International Congress on Chemistry and Material Science}, city={}, country={}, year={2017}, pages={281} }