Pia, D.M.; Gianluca, P.; Annamaria, G.; Massimiliano, B.
PBAT-Based Biodegradable Foams as Lightweight Alternatives to Expanded Polystyrene: Effect of Blend Composition on Rheology, Foaming Behavior and Cellular Morphology. Sustainability 2026, 18, 8748.
https://doi.org/10.3390/su18178748
AMA Style
Pia DM, Gianluca P, Annamaria G, Massimiliano B.
PBAT-Based Biodegradable Foams as Lightweight Alternatives to Expanded Polystyrene: Effect of Blend Composition on Rheology, Foaming Behavior and Cellular Morphology. Sustainability. 2026; 18(17):8748.
https://doi.org/10.3390/su18178748
Chicago/Turabian Style
Pia, Desole Maria, Palangio Gianluca, Gisario Annamaria, and Barletta Massimiliano.
2026. "PBAT-Based Biodegradable Foams as Lightweight Alternatives to Expanded Polystyrene: Effect of Blend Composition on Rheology, Foaming Behavior and Cellular Morphology" Sustainability 18, no. 17: 8748.
https://doi.org/10.3390/su18178748
APA Style
Pia, D. M., Gianluca, P., Annamaria, G., & Massimiliano, B.
(2026). PBAT-Based Biodegradable Foams as Lightweight Alternatives to Expanded Polystyrene: Effect of Blend Composition on Rheology, Foaming Behavior and Cellular Morphology. Sustainability, 18(17), 8748.
https://doi.org/10.3390/su18178748