Chavhan, M.P.; Marzouki, M.; Jaouadi, M.; Ghodbane, O.; Zelenková, G.; Almasi, M.; MaÅ™Ãková, M.; Bezdicka, P.; Tolasz, J.; Murafa, N.
Pore Engineering in Carbon Monoliths Through Soft Templating, In Situ Grown Graphene, and Post-Activation for CO2 Capture, H2 Storage, and Electrochemical Capacitor. Nanomaterials 2025, 15, 900.
https://doi.org/10.3390/nano15120900
AMA Style
Chavhan MP, Marzouki M, Jaouadi M, Ghodbane O, Zelenková G, Almasi M, MaÅ™Ãková M, Bezdicka P, Tolasz J, Murafa N.
Pore Engineering in Carbon Monoliths Through Soft Templating, In Situ Grown Graphene, and Post-Activation for CO2 Capture, H2 Storage, and Electrochemical Capacitor. Nanomaterials. 2025; 15(12):900.
https://doi.org/10.3390/nano15120900
Chicago/Turabian Style
Chavhan, Madhav P., Moomen Marzouki, Mouna Jaouadi, Ouassim Ghodbane, Gabriela Zelenková, Miroslav Almasi, Monika MaÅ™Ãková, Petr Bezdicka, Jakub Tolasz, and Natalija Murafa.
2025. "Pore Engineering in Carbon Monoliths Through Soft Templating, In Situ Grown Graphene, and Post-Activation for CO2 Capture, H2 Storage, and Electrochemical Capacitor" Nanomaterials 15, no. 12: 900.
https://doi.org/10.3390/nano15120900
APA Style
Chavhan, M. P., Marzouki, M., Jaouadi, M., Ghodbane, O., Zelenková, G., Almasi, M., MaÅ™Ãková, M., Bezdicka, P., Tolasz, J., & Murafa, N.
(2025). Pore Engineering in Carbon Monoliths Through Soft Templating, In Situ Grown Graphene, and Post-Activation for CO2 Capture, H2 Storage, and Electrochemical Capacitor. Nanomaterials, 15(12), 900.
https://doi.org/10.3390/nano15120900