Valeria Nicolosi

Affiliations: 
Trinity College, Dublin, Dublin, County Dublin, Ireland 
Area:
graphene, nanotubes, electron microscopy
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"Valeria Nicolosi"
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Publications

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Konkena B, Kalapu C, Kaur H, et al. (2023) Cobalt Oxide 2D Nanosheets Formed at a Polarized Liquid|Liquid Interface toward High-Performance Li-Ion and Na-Ion Battery Anodes. Acs Applied Materials & Interfaces
Kelly AG, Sheil S, Douglas-Henry DA, et al. (2023) Transparent Conductors Printed from Grids of Highly Conductive Silver Nanosheets. Acs Applied Materials & Interfaces
Konkena B, Kaur H, Tian R, et al. (2022) Liquid Processing of Interfacially Grown Iron-Oxide Flowers into 2D-Platelets Yields Lithium-Ion Battery Anodes with Capacities of Twice the Theoretical Value. Small (Weinheim An Der Bergstrasse, Germany). e2203918
Liu J, Mckeon L, Garcia J, et al. (2021) Additive Manufacturing of Ti C MXene-Functionalized Conductive Polymer Hydrogels for Electromagnetic-Interference Shielding. Advanced Materials (Deerfield Beach, Fla.). e2106253
Kaur H, Tian R, Roy A, et al. (2021) Correction to Production of Quasi-2D Platelets of Nonlayered Iron Pyrite (FeS) by Liquid-Phase Exfoliation for High Performance Battery Electrodes. Acs Nano
Ippolito S, Kelly AG, Furlan de Oliveira R, et al. (2021) Covalently interconnected transition metal dichalcogenide networks via defect engineering for high-performance electronic devices. Nature Nanotechnology
Kaur H, Tian R, Roy A, et al. (2020) Production of Quasi-2D Platelets of Non-Layered Iron Pyrite (FeS) by Liquid-Phase Exfoliation for High Performance Battery Electrodes. Acs Nano
Pinilla S, Park SH, Fontanez K, et al. (2020) 0D-1D Hybrid Silicon Nanocomposite as Lithium-Ion Batteries Anodes. Nanomaterials (Basel, Switzerland). 10
Zhang C(, Liang M, Park S, et al. (2020) Extra lithium-ion storage capacity enabled by liquid-phase exfoliated indium selenide nanosheets conductive network Energy & Environmental Science. 13: 2124-2133
Tian R, Alcala N, O’Neill SJK, et al. (2020) Quantifying the Effect of Electronic Conductivity on the Rate Performance of Nanocomposite Battery Electrodes Acs Applied Energy Materials. 3: 2966-2974
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