1. Alpatov, S.S., Vasiliev, F.A., Aleshina, V.Kh., Vagramyan, T.A., and Semenikhin, O.A., Lithium Electrodeposition in the Presence of Surfactants, Russ. J. Electrochem., 2024, vol. 60, no. 5.
2. Alpatov, S.S., Vasiliev, F.A., Aleshina, V.Kh., Vagramyan, T.A., and Semenikhin, O.A., Analysis of the Electrochemical Impedance Spectra and the Structure of the Solid Electrolyte Interphase at the Electrodeposited Metallic Lithium Using the Relaxation-Time Distribution Method, Russ. J. Electrochem., 2024, vol. 60, p. 365.
3. Chen, S.R., Dai, F., and Cai, M., Opportunities and Challenges of High-Energy Lithium Metal Batteries for Electric Vehicle Applications, ACS Energy Lett., 2020, vol. 5, p. 3140.
4. Liu, D.H., Bai, Z.Y., Li, M., Yu, A.P., Luo, D., Liu, W.W., Yang, L., Lu, J., Amine, K., and Chen, Z.W., Developing high safety Li-metal anodes for future high-energy Li-metal batteries: strategies and perspectives, Chem. Soc. Rev., 2020, vol. 49, p. 5407.
5. Qin, K., Holguin, K., Mohammadiroudbari, M., Huang, J., Kim, E. Y. S., Hall, R., and Luo, C., Strategies in structure and electrolyte design for high-performance lithium metal batteries, Adv. Funct. Mater., 2021, vol. 31, article # 2009694.