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Easy and Versatile Synthesis of Bulk Quantities of Highly Enriched C-13-Graphene Materials for Biological and Safety ApplicationsGonzalez, V; Frontinan-Rubio, J; Gomez, MV; Montini, T; Duran-Prado, M; Fornasiero, P; Prato, M; Vazquez, EACS Nano, 2023, 17, 606-620
Ultrasensitive detection of SARS-CoV-2 spike protein by graphene field-effect transistorsSilvestri, A; Zayas-Arrabal, J; Vera-Hidalgo, M; Di Silvio, D; Wetzl, C; Martinez-Moro, M; Zurutuza, A; Torres, E; Centeno, A; Maestre, A; Gómez, JM; Arrastua, M; Elicegui, M; Ontoso, N; Prato, M; Coluzza, I; Criado, A. Nanoscale, 2023, 15, 1076-1085
Carbon dots conjugated to SN38 for improved colorectal anticancer therapyMattinzoli, D; Cacioppo, M; Ikehata, M; Armelloni, S; Al, CM; Castellano, G; Barilani, M; Arcudi, F; Messa, P; Prato, MMater Today Bio, 2022, 16, 100286
Driving up the Electrocatalytic Performance for Carbon Dioxide Conversion through Interface Tuning in Graphene Oxide-Bismuth Oxide NanocompositesMelchionna, M; Moro, M; Adorinni, S; Nasi, L; Colussi, S; Poggini, L; Marchesan, S; Valenti, G; Paolucci, F; Prato, M; Fornasiero, P. ACS Appl. Energy Mater., 2022, 5, 13356-13366
TEGylated Double-Walled Carbon Nanotubes as Platforms to Engineer Neuronal NetworksBarrejón, M; Zummo, F; Mikhalchan, A; Vilatela, JJ; Fontanini, M; Scaini, D; Ballerini, L; Prato, M. ACS Appl. Mater. Interfaces, 2023, 15, 77-90
Broad-Spectrum Antibacterial Activity of Synthesized Carbon Nanodots from D-GlucoseSawalha, S; Assali, M; Raddad, M; Ghneem, T; Sawalhi, T; Almasri, M; Zarour, A; Misia, G; Prato, M; Silvestri, AACS Appl. Bio Mater., 2022, 5, 4860-4872
Morphology and Light-Dependent Spatial Distribution of Spin Defects in Carbon NitrideActis, A; Melchionna, M; Filippini, G; Fornasiero, P; Prato, M; Salvadori, E; Chiesa, MAngew. Chem. Int. Ed., 2022, 61, e202210640
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