Publications

Multidisciplinarity
2024
  • Vezzoni, Carlo Alberto, et al. “Enzyme Mimics Based on Guanidinocalix [4] arene/Nanodiamond Hybrid Systems with Phosphodiesterase Activity.” ChemCatChem (2024): e202301477.
  • Carcione, R., Roppolo, I., Chiappone, A., Cocuzza, M., Marasso, S. L., Tamburri, E., & Battistoni, S. (2024). Role of Precursors and Doping Agents in Producing 3D-Printed PEGDA–PDANI Electroactive Composites by an In Situ Polymerization Approach. ACS Applied Polymer Materials, 6(2), 1159-1168.
  • Carcione, Rocco, et al. “Monitoring of Carbonated Hydroxyapatite Growth on Modified Polycrystalline CVD-Diamond Coatings on Titanium Substrates.” Crystals 14.1 (2024): 66.
  • Palmieri, Elena, et al. “Toward Sustainable Electronics: Exploiting the Potential of a Biodegradable Cellulose Blend for Photolithographic Processes and Eco‐Friendly Devices.” Advanced Materials Technologies 9.1 (2024): 2301282.
  • Pinto, V., et al. “Effect of 14.1 MeV fusion neutron irradiation on YBCO thin films and commercial REBCO tapes.” IEEE Transactions on Applied Superconductivity (2023).
2023
  • Pescosolido, Francesca, et al. “A New Strong‐Acid Free Route to Produce Xanthan Gum‐PANI Composite Scaffold Supporting Bioelectricity.” Macromolecular Bioscience 23.11 (2023): 2300132.
  • Carcione, Rocco, et al. “Self-Standing 3D-Printed PEGDA–PANIs Electroconductive Hydrogel Composites for pH Monitoring.” Gels 9.10 (2023): 784.
  • Carcione, Rocco, et al. “Pretreatment strategies of titanium substrates to modulate the electrochemical properties of CVD-grown Ti-doped diamond electrodes for dopamine detection.” Surface and Coatings Technology 467 (2023): 129662.
  • Battistoni, Silvia, et al. “A Ti‐Doped Chemical Vapor Deposition Diamond Device as Artificial Synapse for Neuromorphic Applications.” Advanced Materials Technologies 8.9 (2023): 2201555.
  • Montaina, Luca, et al. “Three-dimensional-printed polyethylene glycol diacrylate-polyaniline composites by in situ aniline photopolymerization: An innovative biomaterial for electrocardiogram monitoring systems.” ACS Applied Electronic Materials 5.1 (2023): 164-172.
  • Pinto, Valentina, et al. “Nanodiamond influence on the nucleation and growth of YBCO superconducting film deposited by metal–organic decomposition.” Crystal Growth & Design 23.8 (2023): 6086-6099.
  • O’Keeffe, P., et al. “Combining plasmonic nanostructures and diamond for emission of electrons using visible light.” International Conference on Metamaterials, Photonic Crystals and Plasmonics. META Conference, 2023.
  • Palmieri, Elena, et al. “Engineered surface for high performance electrodes on paper.” Applied Surface Science 608 (2023): 155117.
  • Ul Haq, Arsalan, et al. “Electrically conductive scaffolds mimicking the hierarchical structure of cardiac myofibers.” Scientific Reports 13.1 (2023): 2863.
  • Parmeggiani, Matteo, et al. “Organic Bioelectronics Development in Italy: A Review.” Micromachines 14.2 (2023): 460.
  • Prudnikov, Nikita V., et al. “Polyaniline‐Based Memristive Devices as Key Elements of Robust Reservoir Computing for Image Classification.” physica status solidi (a) 220.11 (2023): 2200700.
  • Matsukatova, Anna N., et al. “Combination of Organic‐Based Reservoir Computing and Spiking Neuromorphic Systems for a Robust and Efficient Pattern Classification.” Advanced Intelligent Systems 5.6 (2023): 2200407.
2022
  • Roberto, Matassa, et al. “Characterization of Carbon Structures produced by Graphene Self-Assembling.” CRYSTAL GROWTH & DESIGN (2022).
  • Palmieri, Elena, et al. “A Sustainable Hydroxypropyl Cellulose-Nanodiamond Composite for Flexible Electronic Applications.” Gels 8.12 (2022): 783.
  • Terranova, Maria Letizia, and Emanuela Tamburri. “Nanosized Oxides Supported on Arrays of Carbon Nanotubes: Synthesis Strategies and Performances of TiO 2/CNT Systems.” Tailored Functional Oxide Nanomaterials: From Design to Multi‐Purpose Applications (2022): 89-110.
  • Carotenuto, Felicia, et al. “From soft to hard biomimetic materials: Tuning micro/nano-architecture of scaffolds for tissue regeneration.” Micromachines 13.5 (2022): 780.