The complete list of Prof. Andrea Paolella’s publications can be found at this link Google Scholar

Publications after September 2023

  1. 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
  2. Challenges of the infiltration method for halide-based solid‑state battery cathodes A.Tron et al. Scientific Reports 16, 2026, 16464 link
  3. 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
  4. 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
  5. Aqueous Binders for Electrochemically Stable VOPO4 2H2O Anodes for Li-Ion Storage, A.Beutl et al, Chemistry Open 14 (9), 2025, e202500102 link
  6. Advanced architectures of electrochemical interfaces W.Zhang et al, Communications Chemistry 8, 2025, 235 link
  7. Probing the chemical stability between current collectors and argyrodite Li6PS5Cl sulfide electrolyte, A.Tron, Communications Chemistry, 8, 2025, 212 link
  8. 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
  9. 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
  10. “Dead Lithium” Formation and Mitigation Strategies in Anode-Free Li-Metal Batteries, M. Abdollahifar and A.Paolella, Batteries & Supercaps 8 (3), 2025, e202400505 link
  11. 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
  12. 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
  13. Paving the path toward silicon as anode material for future solid-state batteries, P.Molaiyan et al.ETransportation 23, 2025, 100391 link
  14. Rising Anode-Free Lithium-Sulfur batteries, J.Offermann et al. Chemical Engineering Journal 502, 2024, 157920 link
  15. 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
  16. Anode free post Li-ion batteries, Materials, D.Petersen et al. Materials Horizons,  11 (23), 2024, 5914–5945 link
  17. 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
  18. 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)