Fabrizio Messina, Ph.D.
Affiliations: | 2012-2019 | Department of Physics and Chemistry | University of Palermo |
Area:
nanomaterials, carbon nanodots, ultrafast spectroscopy, photophysics, photochemistryWebsite:
https://scholar.google.it/citations?user=zl3iVAoAAAAJ&hl=it&oi=aoGoogle:
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Publications
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De Michele V, Sciortino A, Messina F, et al. (2021) Transient absorption with a femtosecond tunable excitation pump reveals the emission kinetics of color centers in amorphous silica. Optics Letters. 46: 1736-1739 |
Marino E, Sciortino A, Berkhout A, et al. (2020) Simultaneous Photonic and Excitonic Coupling in Spherical Quantum Dot Supercrystals. Acs Nano |
Longo AV, Sciortino A, Cannas M, et al. (2020) UV photobleaching of carbon nanodots investigated by in situ optical methods. Physical Chemistry Chemical Physics. 22: 13398-13407 |
Madonia A, Martin-Sabi M, Sciortino A, et al. (2020) Highly Efficient Electron Transfer in a Carbon Dot-Polyoxometalate Nanohybrid. The Journal of Physical Chemistry Letters. 11: 4379-4384 |
Armano A, Buscarino G, Messina F, et al. (2020) Dynamic Modification of Fermi Energy in Single-Layer Graphene by Photoinduced Electron Transfer from Carbon Dots. Nanomaterials. 10: 528 |
Camarda P, Vaccaro L, Sciortino A, et al. (2020) Synthesis of multi-color luminescent ZnO nanoparticles by ultra-short pulsed laser ablation Applied Surface Science. 506: 144954 |
Sciortino A, Gazzetto M, Soriano ML, et al. (2019) Ultrafast spectroscopic investigation on fluorescent carbon nanodots: the role of passivation. Physical Chemistry Chemical Physics : Pccp. 21: 16459-16467 |
Armano A, Buscarino G, Messina F, et al. (2019) Photoinduced charge transfer from Carbon Dots to Graphene in solid composite Thin Solid Films. 669: 620-624 |
Cannas M, Camarda P, Vaccaro L, et al. (2019) Luminescence Efficiency of Si/SiO2 Nanoparticles Produced by Laser Ablation Physica Status Solidi (a). 216 |
Sciortino A, Gazzetto M, Buscarino G, et al. (2018) Disentangling size effects and spectral inhomogeneity in carbon nanodots by ultrafast dynamical hole-burning. Nanoscale |