All Publications
2024
Cirignano M., Roshan H., Farinini E., Di Giacomo A., Fiorito S., Piccinotti D., Khabbazabkenar S., Di Stasio F., Moreels I.
Blue CdSe/CdS core/crown nanoplatelet light-emitting diodes obtained via a design-of-experiments approach
Nanoscale
Article
Journal
2024
Fiorito S., Silvestri M., Cirignano M., Marini A., Di Stasio F.
Controlled Growth of Large SiO2 Shells onto Semiconductor Colloidal Nanocrystals: A Pathway Toward Photonic Integration
ACS Applied Nano Materials, vol. 7, (no. 4), pp. 3724-3733
2024
Fiorito S., Silvestri M., Cirignano M., Marini A., Di Stasio F.
Design of Experiments Optimization of SiO2 Shell Growth on semiconductor nanocrystals: A Pathway Toward Photonic Integration
Primo Congresso NQSTI
Conference Paper
Conference
2024
Fiorito S., Cirignano M., Di Stasio F.
DOE optimization of SiO2 shell growth on semiconductor nanocrystals
EMRS 2024 Spring Meeting
Conference Paper
Conference
2024
Mai B.T., Fernandez-Cabada T., Conteh J.S., Nucci G.E.P., Fiorito S., Gavilan H., Debellis D., Gjurgjaj L., Pellegrino T.
Nanoplatforms for Magnetic-Photo-Heating of Thermo-Resistant Tumor Cells: Singular Synergic Therapeutic Effects at Mild Temperature
Small
Scientific Talks
2020
Gavilán H., Fiorito S., Pugliese G., Rizzo G., Teitelboim A., Chan E., Pellegrino T.
High-throughput and reproducible synthesis of Au-FexOy magnetic nanodimers as theranostic agents
1st International workshop of the COMPASS project
Workshop/Symposium
Oral presentations
2024
Fiorito S., Silvestri M., Cirignano M., Marini A., Di Stasio F.
Design of Experiments Optimization of SiO2 Shell Growth on semiconductor nanocrystals: A Pathway Toward Photonic Integration
Primo Congresso NQSTI
Conference
2024
Fiorito S., Cirignano M., Di Stasio F.
DOE optimization of SiO2 shell growth on semiconductor nanocrystals
EMRS 2024 Spring Meeting
Conference
Awards and Achievements
2022
Bertucci S., Megahd H., Dodero A., Fiorito S., Di Stasio F., Patrini M., Comoretto D., Lova P.
“Solution processed inorganic semiconductors: high performing hybrid materials for photonics”