GarcÃa-Jarana, B.; Valor, D.; GarcÃa-Casas, I.; Sánchez-Oneto, J.; Mantell, C.; Portela, J.R.; Pereyra, C.
Hydrothermal Treatment to Enhance Supercritical CO2 Polycaprolactone Foaming Processes for Tissue Engineering Scaffolds. Polymers 2025, 17, 3076.
https://doi.org/10.3390/polym17223076
AMA Style
GarcÃa-Jarana B, Valor D, GarcÃa-Casas I, Sánchez-Oneto J, Mantell C, Portela JR, Pereyra C.
Hydrothermal Treatment to Enhance Supercritical CO2 Polycaprolactone Foaming Processes for Tissue Engineering Scaffolds. Polymers. 2025; 17(22):3076.
https://doi.org/10.3390/polym17223076
Chicago/Turabian Style
GarcÃa-Jarana, Belén, Diego Valor, Ignacio GarcÃa-Casas, Jezabel Sánchez-Oneto, Casimiro Mantell, Juan R. Portela, and Clara Pereyra.
2025. "Hydrothermal Treatment to Enhance Supercritical CO2 Polycaprolactone Foaming Processes for Tissue Engineering Scaffolds" Polymers 17, no. 22: 3076.
https://doi.org/10.3390/polym17223076
APA Style
GarcÃa-Jarana, B., Valor, D., GarcÃa-Casas, I., Sánchez-Oneto, J., Mantell, C., Portela, J. R., & Pereyra, C.
(2025). Hydrothermal Treatment to Enhance Supercritical CO2 Polycaprolactone Foaming Processes for Tissue Engineering Scaffolds. Polymers, 17(22), 3076.
https://doi.org/10.3390/polym17223076