Batteries (Apr 2024)

Pure and (Sn or Mg) Doped GeFe<sub>2</sub>O<sub>4</sub> as Anodes for Sodium-Ion Batteries

  • Marco Ambrosetti,
  • Irene Quinzeni,
  • Alessandro Girella,
  • Vittorio Berbenni,
  • Benedetta Albini,
  • Pietro Galinetto,
  • Michela Sturini,
  • Marcella Bini

DOI
https://doi.org/10.3390/batteries10040134
Journal volume & issue
Vol. 10, no. 4
p. 134

Abstract

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GeFe2O4 (GFO) is a germanium mineral whose spinel crystal structure determines its interesting functional properties. Recently, it was proposed for application as an anode for Sodium and Lithium-Ion Batteries (SIBs and LIBs) thanks to its combined conversion and alloying electrochemical mechanism. However, its entire potential is limited by the poor electronic conductivity and volumetric expansion during cycling. In the present paper, pure and Sn or Mg doped GFO samples obtained from mechano-chemical solid-state synthesis and properly carbon coated were structurally and electrochemically characterized and proposed, for the first time, as anodes for SIBs. The spinel cubic structure of pure GFO is maintained in doped samples. The expected redox processes, involving Fe and Ge ions, are evidenced in the electrochemical tests. The Sn doping demonstrated a beneficial effect on the long-term cycling (providing 150 mAh/g at 0.2 C after 120 cycles) and on the capacity values (346 mAh/g at 0.2 C with respect to 300 mAh/g of the pure one), while the Mg substitution was less effective.

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