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Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory
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Ş. KAYA Et Al. , "Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory," JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168, 2022

KAYA, Ş. Et Al. 2022. Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168 .

KAYA, Ş., Ulaş, B., Duzenli, D., ÖNAL, I., Er, O. F., Yilmaz, Y., ... Tezsevin, I.(2022). Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168.

KAYA, ŞEFİKA Et Al. "Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory," JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168, 2022

KAYA, ŞEFİKA Et Al. "Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory." JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168, 2022

KAYA, Ş. Et Al. (2022) . "Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory." JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS , vol.168.

@article{article, author={ŞEFİKA KAYA Et Al. }, title={Glucose electrooxidation modelling studies on carbon nanotube supported Pd catalyst with response surface methodology and density functional theory}, journal={JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS}, year=2022}