Druta, A.; Bouhmala, R.; Ragdi, T.; Luna, M.; Bañobre-López, M.; Masaguer, C.F.; AmorÃn, M.; Barbosa, S.; Taboada, P.; Coelho, A.
Developing Heterogeneous Porous 3D-Printed SiO2-Pd-K2SiO3 Monolithic Catalyst via Surface MOF Growth and Pyrolysis for the Synthesis of Antitumoral Isatins. Pharmaceutics 2025, 17, 505.
https://doi.org/10.3390/pharmaceutics17040505
AMA Style
Druta A, Bouhmala R, Ragdi T, Luna M, Bañobre-López M, Masaguer CF, AmorÃn M, Barbosa S, Taboada P, Coelho A.
Developing Heterogeneous Porous 3D-Printed SiO2-Pd-K2SiO3 Monolithic Catalyst via Surface MOF Growth and Pyrolysis for the Synthesis of Antitumoral Isatins. Pharmaceutics. 2025; 17(4):505.
https://doi.org/10.3390/pharmaceutics17040505
Chicago/Turabian Style
Druta, Alexandrina, Rania Bouhmala, Teqwa Ragdi, Mariangel Luna, Manuel Bañobre-López, Christian F. Masaguer, Manuel AmorÃn, Silvia Barbosa, Pablo Taboada, and Alberto Coelho.
2025. "Developing Heterogeneous Porous 3D-Printed SiO2-Pd-K2SiO3 Monolithic Catalyst via Surface MOF Growth and Pyrolysis for the Synthesis of Antitumoral Isatins" Pharmaceutics 17, no. 4: 505.
https://doi.org/10.3390/pharmaceutics17040505
APA Style
Druta, A., Bouhmala, R., Ragdi, T., Luna, M., Bañobre-López, M., Masaguer, C. F., AmorÃn, M., Barbosa, S., Taboada, P., & Coelho, A.
(2025). Developing Heterogeneous Porous 3D-Printed SiO2-Pd-K2SiO3 Monolithic Catalyst via Surface MOF Growth and Pyrolysis for the Synthesis of Antitumoral Isatins. Pharmaceutics, 17(4), 505.
https://doi.org/10.3390/pharmaceutics17040505