Catauro, M.; Barrino, F.; Dal Poggetto, G.; Crescente, G.; Piccolella, S.; Pacifico, S.
Chlorogenic Acid Entrapped in Hybrid Materials with High PEG Content: A Strategy to Obtain Antioxidant Functionalized Biomaterials? Materials 2019, 12, 148.
https://doi.org/10.3390/ma12010148
AMA Style
Catauro M, Barrino F, Dal Poggetto G, Crescente G, Piccolella S, Pacifico S.
Chlorogenic Acid Entrapped in Hybrid Materials with High PEG Content: A Strategy to Obtain Antioxidant Functionalized Biomaterials? Materials. 2019; 12(1):148.
https://doi.org/10.3390/ma12010148
Chicago/Turabian Style
Catauro, Michelina, Federico Barrino, Giovanni Dal Poggetto, Giuseppina Crescente, Simona Piccolella, and Severina Pacifico.
2019. "Chlorogenic Acid Entrapped in Hybrid Materials with High PEG Content: A Strategy to Obtain Antioxidant Functionalized Biomaterials?" Materials 12, no. 1: 148.
https://doi.org/10.3390/ma12010148
APA Style
Catauro, M., Barrino, F., Dal Poggetto, G., Crescente, G., Piccolella, S., & Pacifico, S.
(2019). Chlorogenic Acid Entrapped in Hybrid Materials with High PEG Content: A Strategy to Obtain Antioxidant Functionalized Biomaterials? Materials, 12(1), 148.
https://doi.org/10.3390/ma12010148