The complete list of Prof. Andrea Paolella’s publications can be found at this link Google Scholar
Publications after September 2023
- Effects of Cu Surface Area and Microtexture on Lithium Plating in Anode-Less Batteries N.Yamini et al. Small Structures 7(4), 2026, e202600021 link
- Challenges of the infiltration method for halide-based solid‑state battery cathodes A.Tron et al. Scientific Reports 16, 2026, 16464 link
- Anode-Free Batteries: The Energy Density Prize and the Stability Paradox, M. Abdollahifar and A.Paolella, ACS Energy Letters 11 (2), 2026,1323–1348 link
- Dendrite-Free Formation of Anode-Less Lithium Metal Through a Solid Glassy Electrolyte Film for Lithium Metal Batteries, A.Tron et al. Physica Status Solid a, 223 (2), 2026, e202500285 link
- Aqueous Binders for Electrochemically Stable VOPO4 2H2O Anodes for Li-Ion Storage, A.Beutl et al, Chemistry Open 14 (9), 2025, e202500102 link
- Advanced architectures of electrochemical interfaces W.Zhang et al, Communications Chemistry 8, 2025, 235 link
- Probing the chemical stability between current collectors and argyrodite Li6PS5Cl sulfide electrolyte, A.Tron, Communications Chemistry, 8, 2025, 212 link
- Water-Assisted Electrosynthesis of a Lithium–Aluminum Intermetallic from a Lithium Chloride-Ionic Liquid Melt, F.Bernini et al., ACS Electrochemistry 1 (5), 2025, 599–606. link
- Insights into the chemical and electrochemical behavior of halide and sulfide electrolytes in all-solid-state batteries, A.Tron et al. Energy Advances, 4 (4), 2025, 518–529. link
- “Dead Lithium” Formation and Mitigation Strategies in Anode-Free Li-Metal Batteries, M. Abdollahifar and A.Paolella, Batteries & Supercaps 8 (3), 2025, e202400505 link
- The chemistry of halide-based solid electrolytes: unlocking advances in solid-state Li-ion batteries, P.Molaiyan et al., Chemical Communications, 61 (14), 2025, 2846–2857 link
- Uncovering the role of atmosphere on thermal stability of NASICON type solid electrolytes and oxide-based cathode materials via high temperature X-ray diffraction W.Zhu et al. Future Batteries, 5, 2025, 100045 link
- Paving the path toward silicon as anode material for future solid-state batteries, P.Molaiyan et al.ETransportation 23, 2025, 100391 link
- Rising Anode-Free Lithium-Sulfur batteries, J.Offermann et al. Chemical Engineering Journal 502, 2024, 157920 link
- Influence of 3D Structural Design on the Electrochemical Performance of Aluminum Metal as Negative Electrode for Li-Ion Batteries, M.Ricci et al. ChemPhysChem, 25 (23), 2024, e202400493 link
- Anode free post Li-ion batteries, Materials, D.Petersen et al. Materials Horizons, 11 (23), 2024, 5914–5945 link
- Cost-Effective Solutions for Lithium-Ion Battery Manufacturing: Comparative Analysis of Olefine and Rubber-Based Alternative Binders for High-Energy Ni-Rich NCM Cathodes, S.Montes et al. ChemElectroChem, 11 (21), 2024, e202400465 link
- Interfaces in Lithium-ion Batteries, A.Paolella, 2024, Springer (monography) link
Patents
- 1) Sali policationici per elettroliti di batterie a ioni di litio o sodio, 2026, P15535IT00 (Italian patent)
- 2) Metodo di elettrodeposizione di litio metallico e leghe metalliche a base di litio a partire da miscele di liquidi ionici e acqua, 2024, P8108IT00 (Italian patent)
