I. Muz And M. Kurban, "Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT," JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27, pp.1839-1847, 2022
Muz, I. And Kurban, M. 2022. Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT. JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27 , 1839-1847.
Muz, I., & Kurban, M., (2022). Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT. JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27, 1839-1847.
Muz, Iskender, And MUSTAFA KURBAN. "Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT," JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27, 1839-1847, 2022
Muz, Iskender And Kurban, MUSTAFA. "Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT." JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27, pp.1839-1847, 2022
Muz, I. And Kurban, M. (2022) . "Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT." JOURNAL OF COMPUTATIONAL CHEMISTRY , vol.43, no.27, pp.1839-1847.
@article{article, author={Iskender Muz And author={MUSTAFA KURBAN}, title={Zinc oxide nanoclusters and their potential application as CH4 and CO2 gas sensors: Insight from DFT and TD-DFT}, journal={JOURNAL OF COMPUTATIONAL CHEMISTRY}, year=2022, pages={1839-1847} }