Golub, N.; Galić, E.; Radić, K.; Jagodić, A.-M.; Predović, N.; Katelan, K.; Tesla, L.; Pedisić, S.; Vinković, T.; Vitali Čepo, D.
Phyto-Assisted Synthesis of Nanoselenium–Surface Modification and Stabilization by Polyphenols and Pectins Derived from Agricultural Wastes. Foods 2023, 12, 1117.
https://doi.org/10.3390/foods12051117
AMA Style
Golub N, Galić E, Radić K, Jagodić A-M, Predović N, Katelan K, Tesla L, Pedisić S, Vinković T, Vitali Čepo D.
Phyto-Assisted Synthesis of Nanoselenium–Surface Modification and Stabilization by Polyphenols and Pectins Derived from Agricultural Wastes. Foods. 2023; 12(5):1117.
https://doi.org/10.3390/foods12051117
Chicago/Turabian Style
Golub, Nikolina, Emerik Galić, Kristina Radić, Ana-Maria Jagodić, Nela Predović, Kristina Katelan, Lucija Tesla, Sandra Pedisić, Tomislav Vinković, and Dubravka Vitali Čepo.
2023. "Phyto-Assisted Synthesis of Nanoselenium–Surface Modification and Stabilization by Polyphenols and Pectins Derived from Agricultural Wastes" Foods 12, no. 5: 1117.
https://doi.org/10.3390/foods12051117
APA Style
Golub, N., Galić, E., Radić, K., Jagodić, A.-M., Predović, N., Katelan, K., Tesla, L., Pedisić, S., Vinković, T., & Vitali Čepo, D.
(2023). Phyto-Assisted Synthesis of Nanoselenium–Surface Modification and Stabilization by Polyphenols and Pectins Derived from Agricultural Wastes. Foods, 12(5), 1117.
https://doi.org/10.3390/foods12051117