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Degradation of a graphene-reinforced polyamide by fungi: When culture conditions matterFortuna, L; Carniel, FC; Garrido, M; Bianco, A; Buerki-Thurnherr, T; Wick, P; Tretiach, MJ. Environ. Sci., 2026, 168, 292-301
Manganese-Doped Carbon Nanodots as Next-Generation MRI and Fluorescence Imaging Agents.Cesco, M; Martinez-Parra, L; Apresto, SM; Wetzl, C; Echeverria-Beistegui, BM; Ruiz-Cabello, J; Cardo, L; Prato, MACS Nano, 2026,10.1021/acsnano.6c03209
Bioactive Amino-Carbon Dots for Sustainable Crop Protection: Cellular Uptake and Metabolomic Insights into the Antifungal and Antibacterial Activity in Tomato Plants.Camilli, A; Patriarca, A; Ferrante, P; Brasili, E; Atanasio, P; Di Conzo, C; Sturabotti, E; Verdolini, L; D'Angeli, S; Rossi, M; Vetica, F; Leonelli, F; Simonetti, G; Valletta, AACS Appl. Mater. Interfaces, 2026, 18, 25873-25891
Going Deep into the Surface Chemistry of Carbon Dots: Influence of Functional Groups on the Redox Abilities.Morbiato, L; Sbacchi, M; Dosso, J; Pengo, P; Gobbo, P; Filippini, G; Prato, MSmall, 2026, 22, e14420
Synthesis of a pi-Extended Phenazine Diimide Derivative and Characterization of Its Closed-Shell Reduced States.Rigodanza, F; Bartolomei, B; Crea, I; Costa, P; Demitri, N; Bonchio, M; Prato, M; Dosso, JChem. Eur. J., 2026, 32, e03285
Nanomaterial-Based Inkjet Printing for Electrochemical Sensing.Panacek, D; Urban, M; Silvestri, A; Dedek, I; Nalepa, MA; Merkoci, A; Prato, M; Otyepka, MSmall, 2026, 0, e13028
Impact of Proteins on the Cellular Uptake of Carbon NanodotsLiu, ZY; Yan, HJ; Gomez, IJ; Carion, CC; Arnaiz, B; Zhu, DC; Prato, M; Parak, WJ; Feliu, N; Cacioppo, MACS Omega, 2025, 10, 60928-60935
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