E. Mete Et Al. , "PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations," Applied Surface Science , vol.641, 2023
Mete, E. Et Al. 2023. PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations. Applied Surface Science , vol.641 .
Mete, E., YILMAZ, B., & ÜNER, D., (2023). PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations. Applied Surface Science , vol.641.
Mete, Ersen, BEGÜM YILMAZ, And DENİZ ÜNER. "PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations," Applied Surface Science , vol.641, 2023
Mete, Ersen Et Al. "PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations." Applied Surface Science , vol.641, 2023
Mete, E. YILMAZ, B. And ÜNER, D. (2023) . "PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations." Applied Surface Science , vol.641.
@article{article, author={Ersen Mete Et Al. }, title={PdH α-phase is associated with residual oxygen as revealed by in situ 1H NMR measurements and DFT-NMR estimations}, journal={Applied Surface Science}, year=2023}