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Antipov Evgenii Viktorovich

Publications in Math-Net.Ru

  1. Sodium intercalation into the NaNbTi(PO4)3 NASICON-type phosphate

    Mendeleev Commun., 36:1 (2026),  85–87
  2. NaAlNb(PO4)3 NASICON-type phosphate with the Nb5+/Nb4+/Nb3+ multielectron redox activity on sodium intercalation

    Mendeleev Commun., 35:4 (2025),  393–395
  3. Low-temperature synthesis in the dittmarite–sodium acetate trihydrate system: electrochemical activity of M3+/M2+ redox couples in AMPO4 (A = Na, Li; M = Mn, Mn/Fe)

    Mendeleev Commun., 34:2 (2024),  242–245
  4. Hard carbon as anode material for metal-ion batteries

    Usp. Khim., 93:2 (2024),  1–26
  5. Carbon nanotubes and carbon-coated current collector significantly improve the performance of lithium-ion battery with PEDOT:PSS binder

    Mendeleev Commun., 33:2 (2023),  206–208
  6. Electrode materials based on complex d-metal oxides for symmetrical solid oxide fuel cells

    Usp. Khim., 90:6 (2021),  644–676
  7. Multigap superconductivity in doped $p$-type cuprates

    Pis'ma v Zh. Èksper. Teoret. Fiz., 100:2 (2014),  134–140
  8. Neutron scattering for analysis of processes in lithium-ion cells

    Usp. Khim., 83:12 (2014),  1120–1134
  9. Cathode materials based on perovskite-like transition metal oxides for medium-temperature solid oxide fuel cells

    Usp. Khim., 82:7 (2013),  686–700
  10. Electrochemical equilibria in copper/cryolite-alumina melt systems

    Mendeleev Commun., 18:5 (2008),  244–245
  11. Structural design of superconductors based în complex copper oxides

    UFN, 178:2 (2008),  190–202
  12. Complex manganese oxides with the brownmillerite structure: synthesis, crystal chemistry and properties

    Usp. Khim., 73:9 (2004),  917–931
  13. High-temperature superconductors based on complex layered copper oxyfluorides

    Usp. Khim., 71:5 (2002),  442–460
  14. Complex oxides with coherent intergrowth structures

    Usp. Khim., 64:8 (1995),  769–780


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