I. Karaduman Er Et Al. , "Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures," In Advances in Optoelectronic Materials , Basel: Springer Nature, 2021, pp.97-124.
Karaduman Er, I. Et Al. Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures. 2021. In Advances in Optoelectronic Materials , Springer Nature, Basel, 97-124.
Karaduman Er, I., Çağırtekin, A. O., Çorlu, T., Yıldırım, M. A., Ateş, A., & Acar, S., (2021). Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures. Advances in Optoelectronic Materials (pp.97-124), Basel: Springer Nature.
Karaduman Er, Irmak Et Al. "Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures." In Advances in Optoelectronic Materials , 97-124. Basel: Springer Nature, 2021
Karaduman Er, Irmak K. Et Al. "Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures." Advances in Optoelectronic Materials , Springer Nature, 2021, pp.97-124.
Karaduman Er, I. Et Al. (2021) "Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures", Advances in Optoelectronic Materials . Basel: Springer Nature.
@bookchapter{bookchapter, author ={Irmak Karaduman Er Et Al. }, chaptertitle={Enhancement of the NO Gas Sensitivity by UV Light in Sn-Doped ZnO Nanostructures}, booktitle={ Advances in Optoelectronic Materials}, publisher={Springer Nature}, city={Basel},year={2021} }