GarcÃa-Sobrino, R.; Cortés, A.; Calderón-Villajos, R.; DÃaz, J.G.; Muñoz, M.
Novel and Accessible Physical Recycling for Expanded Polystyrene Waste with the Use of Acetone as a Solvent and Additive Manufacturing (Direct Ink-Write 3D Printing). Polymers 2023, 15, 3888.
https://doi.org/10.3390/polym15193888
AMA Style
GarcÃa-Sobrino R, Cortés A, Calderón-Villajos R, DÃaz JG, Muñoz M.
Novel and Accessible Physical Recycling for Expanded Polystyrene Waste with the Use of Acetone as a Solvent and Additive Manufacturing (Direct Ink-Write 3D Printing). Polymers. 2023; 15(19):3888.
https://doi.org/10.3390/polym15193888
Chicago/Turabian Style
GarcÃa-Sobrino, Rubén, Alejandro Cortés, RocÃo Calderón-Villajos, Jorge G. DÃaz, and Marta Muñoz.
2023. "Novel and Accessible Physical Recycling for Expanded Polystyrene Waste with the Use of Acetone as a Solvent and Additive Manufacturing (Direct Ink-Write 3D Printing)" Polymers 15, no. 19: 3888.
https://doi.org/10.3390/polym15193888
APA Style
GarcÃa-Sobrino, R., Cortés, A., Calderón-Villajos, R., DÃaz, J. G., & Muñoz, M.
(2023). Novel and Accessible Physical Recycling for Expanded Polystyrene Waste with the Use of Acetone as a Solvent and Additive Manufacturing (Direct Ink-Write 3D Printing). Polymers, 15(19), 3888.
https://doi.org/10.3390/polym15193888