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Graphene, other carbon nanomaterials and the immune system: toward nanoimmunity-by-designGazzi, A; Fusco, L; Orecchioni, M; Ferrari, S; Franzoni, G; Yan, JS; Rieckher, M; Peng, GT; Lucherelli, MA; Vacchi, IA; Chau, NDQ; Criado, A; Istif, A; Mancino, D; Dominguez, A; Eckert, H; Vazquez, E; Da Ros, T; Nicolussi, P; Palermo, V; Schumacher, B; Cuniberti, G; Mai, YY; Clementi, C; Pasquali, M; Feng, XL; Kostarelos, K; Yilmazer, A; Bedognetti, D; Fadeel, B; Prato, M; Bianco, A; Delogu, LG J. Phys. Mater., 2020, 3, 034009
Symmetry-Breaking Charge-Transfer Chromophore Interactions Supported by Carbon NanodotsCacioppo, M; Scharl, T; Dordevic, L; Cadranel, A; Arcudi, F; Guldi, DM; Prato, MAngew. Chem. Int. Ed., 2020, 59, 12779-12784
Keratinocytes are capable of selectively sensing low amounts of graphene-based materials: Implications for cutaneous applicationsFusco, L; Pelin, M; Mukherjee, S; Keshavan, S; Sosa, S; Martin, C; Gonzalez, V; Vazquez, E; Prato, M; Fadeel, B; Tubaro, ACarbon, 2020, 159, 598-610
Production and processing of graphene and related materialsBackes, C; Abdelkader, AM; Alonso, C; Andrieux-Ledier, A; Arenal, R; Azpeitia, J; Balakrishnan, N; Banszerus, L; Barjon, J; Bartali, R; Bellani, S; Berger, C; Berger, R; Ortega, MMB; Bernard, C; Beton, PH; Beyer, A; Bianco, A; Boggild, P; Bonaccorso, F; Barin, GB; Botas, C; Bueno, RA; Carriazo, D; Castellanos-Gomez, A; Christian, M; Ciesielski, A; Ciuk, T; Cole, MT; Coleman, J; Coletti, C; Crema, L; Cun, HY; Dasler, D; De Fazio, D; Diez, N; Drieschner, S; Duesberg, GS; Fasel, R; Feng, XL; Fina, A; Forti, S; Galiotis, C; Garberoglio, G; Garcia, JM; Garrido, JA; Gibertini, M; Golzhauser, A; Gome2D Mater., 2020, 7, 022001
Mass spectrometry of carbohydrate-protein interactions on a glycan array conjugated to CVD graphene surfacesMerino, JP; Serna, S; Criado, A; Centeno, A; Napal, I; Calvo, J; Zurutuza, A; Reichardt, N; Prato, M. 2D Mater., 2020, 7, 024003
Concise, Single-Step Synthesis of Sulfur-Enriched Graphene: Immobilization of Molecular Clusters and Battery ApplicationsOmachi, H; Inoue, T; Hatao, S; Shinohara, H; Criado, A; Yoshikawa, H; Syrgiannis, Z; Prato, M. Angew. Chem. Int. Ed., 2020, 59, 7836-7841
Banning carbon nanotubes would be scientifically unjustified and damaging to innovationHeller, DA; Jena, PV; Pasquali, M; Kostarelos, K; Delogu, LG; Meidl, RE; Rotkin, SV; Scheinberg, DA; Schwartz, RE; Terrones, M; Wang, YH; Bianco, A; Boghossian, AA; Cambre, S; Cognet, L; Corrie, SR; Demokritou, P; Giordani, S; Hertel, T; Ignatova, T; Islam, MF; Iverson, NM; Jagota, A; Janas, D; Kono, J; Kruss, S; Landry, MP; Li, Y; Martel, R; Maruyama, S; Naumov, AV; Prato, M; Quinn, SJ; Roxbury, D; Strano, MS; Tour, JM; Weisman, RB; Wenseleers, W; Yudasaka, MNat. Nanotechnol., 2020, 15, 164-166-166
Supramolecular Chiral Discrimination of D-Phenylalanine Amino Acid Based on a Perylene Bisimide DerivativeBettini, S; Syrgiannis, Z; Ottolini, M; Bonfrate, V; Giancane, G; Valli, L; Prato, MFront. Bioeng. Biotechnol., 2020, 8, 160
Tuning Neuronal Circuit Formation in 3D Polymeric Scaffolds by Introducing Graphene at the Bio/Material InterfaceRauti, R; Secomandi, N; Martin, C; Bosi, S; Severino, FPU; Scaini, D; Prato, M; Vazquez, E; Ballerini, LAdv. Biosys., 2020, 4, 1900233
Tailored Methodology Based on Vapor Phase Polymerization to Manufacture PEDOT/CNT Scaffolds for Tissue EngineeringDominguez-Alfaro, A; Alegret, N; Arnaiz, B; González-Domínguez, JM; Martin-Pacheco, A; Cossío, U; Porcarelli, L; Bosi, S; Vázquez, E; Mecerreyes, D; Prato, M. ACS Biomater. Sci. Eng., 2020, 6, 1269-1278
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