M. Martins Et Al. , "Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation," Materials Science and Engineering: B , vol.310, 2024
Martins, M. Et Al. 2024. Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation. Materials Science and Engineering: B , vol.310 .
Martins, M., Bozkurt, G., BAYRAKÇEKEN, A., POZAN SOYLU, G. S., Šljukić, B., & Santos, D. M., (2024). Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation. Materials Science and Engineering: B , vol.310.
Martins, Marta Et Al. "Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation," Materials Science and Engineering: B , vol.310, 2024
Martins, Marta Et Al. "Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation." Materials Science and Engineering: B , vol.310, 2024
Martins, M. Et Al. (2024) . "Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation." Materials Science and Engineering: B , vol.310.
@article{article, author={Marta Martins Et Al. }, title={Pt-decorated binary transition metal oxides (MnO-NiO, MnO-TiO2) for enhanced electrocatalysis of oxygen reduction and borohydride oxidation}, journal={Materials Science and Engineering: B}, year=2024}