Imani, M.; Dimic-Misic, K.; Kostic, M.; Barac, N.; Janackovic, D.; Uskokovic, P.; Ivanovska, A.; Lahti, J.; Barcelo, E.; Gane, P.
Achieving a Superhydrophobic, Moisture, Oil and Gas Barrier Film Using a Regenerated Cellulose–Calcium Carbonate Composite Derived from Paper Components or Waste. Sustainability 2022, 14, 10425.
https://doi.org/10.3390/su141610425
AMA Style
Imani M, Dimic-Misic K, Kostic M, Barac N, Janackovic D, Uskokovic P, Ivanovska A, Lahti J, Barcelo E, Gane P.
Achieving a Superhydrophobic, Moisture, Oil and Gas Barrier Film Using a Regenerated Cellulose–Calcium Carbonate Composite Derived from Paper Components or Waste. Sustainability. 2022; 14(16):10425.
https://doi.org/10.3390/su141610425
Chicago/Turabian Style
Imani, Monireh, Katarina Dimic-Misic, Mirjana Kostic, Nemanja Barac, Djordje Janackovic, Petar Uskokovic, Aleksandra Ivanovska, Johanna Lahti, Ernest Barcelo, and Patrick Gane.
2022. "Achieving a Superhydrophobic, Moisture, Oil and Gas Barrier Film Using a Regenerated Cellulose–Calcium Carbonate Composite Derived from Paper Components or Waste" Sustainability 14, no. 16: 10425.
https://doi.org/10.3390/su141610425
APA Style
Imani, M., Dimic-Misic, K., Kostic, M., Barac, N., Janackovic, D., Uskokovic, P., Ivanovska, A., Lahti, J., Barcelo, E., & Gane, P.
(2022). Achieving a Superhydrophobic, Moisture, Oil and Gas Barrier Film Using a Regenerated Cellulose–Calcium Carbonate Composite Derived from Paper Components or Waste. Sustainability, 14(16), 10425.
https://doi.org/10.3390/su141610425