Cioci, A.; Benzi, P.; Canepa, C.; Mortati, L.; Alvarez de la Paz, A.; Garnica-Palafox, I.M.; Sánchez-Arévalo, F.M.; Dante, R.C.; Marabello, D.
Fructose-Based Metal–Organic Framework as a Means to Synthesize Sr-Loaded Chitosan Nanospheres with NLO Properties for Theranostic Applications in Radiotherapy. Inorganics 2024, 12, 231.
https://doi.org/10.3390/inorganics12090231
AMA Style
Cioci A, Benzi P, Canepa C, Mortati L, Alvarez de la Paz A, Garnica-Palafox IM, Sánchez-Arévalo FM, Dante RC, Marabello D.
Fructose-Based Metal–Organic Framework as a Means to Synthesize Sr-Loaded Chitosan Nanospheres with NLO Properties for Theranostic Applications in Radiotherapy. Inorganics. 2024; 12(9):231.
https://doi.org/10.3390/inorganics12090231
Chicago/Turabian Style
Cioci, Alma, Paola Benzi, Carlo Canepa, Leonardo Mortati, Antonio Alvarez de la Paz, Itzel Marisol Garnica-Palafox, Francisco Manuel Sánchez-Arévalo, Roberto C. Dante, and Domenica Marabello.
2024. "Fructose-Based Metal–Organic Framework as a Means to Synthesize Sr-Loaded Chitosan Nanospheres with NLO Properties for Theranostic Applications in Radiotherapy" Inorganics 12, no. 9: 231.
https://doi.org/10.3390/inorganics12090231
APA Style
Cioci, A., Benzi, P., Canepa, C., Mortati, L., Alvarez de la Paz, A., Garnica-Palafox, I. M., Sánchez-Arévalo, F. M., Dante, R. C., & Marabello, D.
(2024). Fructose-Based Metal–Organic Framework as a Means to Synthesize Sr-Loaded Chitosan Nanospheres with NLO Properties for Theranostic Applications in Radiotherapy. Inorganics, 12(9), 231.
https://doi.org/10.3390/inorganics12090231