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April 17, 20260 citationsOpen Access

Tuning functional properties via Fe/Al ratio in the franklinite–gahnite (ZnFe2O4-ZnAl2O4) solid solution series

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MMMeriem MachitouenPMPatrick MoweJSJohannes Spiegel

Key Points

  • The research aims to explore how varying the Fe/Al ratio affects the properties of zinc ferrite—zinc aluminate solid solutions.
  • Investigated the structure-property relationship in ZnFe2-xAlxO4 with varying x values from 0.0 to 2.0.
  • Measured electrical conductivity, optical band gap, and magnetic susceptibility based on aluminum concentration.
  • Conducted cyclovoltammetric tests for zinc (de)insertion in zinc-metal battery systems.
  • Band gap increases from approximately 2.0 eV to 4.2 eV with increased aluminum content.
  • Electrical conductivity and magnetic susceptibility decrease with more Al3+ substitution for Fe3+.
  • Significant proton co-insertion observed alongside zinc ions in proposed battery applications.

Abstract

In this study, a comprehensive investigation of the structure-property relationship in the solid solution series ZnFe2-xAlxO4 with x = 0.0 to 2.0 is provided. Measurements of the electrical conductivity, optical band gap, magnetic susceptibility, and other relevant parameters are discussed in dependence on the aluminum concentration. As expected, the band gap increases from roughly 2.0 eV to 4.2 eV while electronic conductivity and magnetic susceptibility decrease the more Fe3+ is substituted by Al3+. In addition, it was found that pure zinc ferrite, at least, exhibits conductivity dependent on the partial pressure of oxygen at temperatures above 600 °C. This could be an indication of possible oxygen-ion conductivity in the high-temperature range. Furthermore, special focus is put on the potential application of ZnFe2-xAlxO4 with x ≤ 1.0 as active material at the positive electrode of zinc-metal batteries. Zinc (de)insertion is investigated by cyclovoltammetric measurements in spinel|buffered aq. electrolyte|Zn cells. Results show that apart from zinc ions a considerable amount of protons can be reversibly co-inserted into the material, making it a possible contender as a stable active material.

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Cite This Study

Machitouen et al. (2026) studied this question.

synapsesocial.com/papers/69e1d0165cdc762e9d8591dahttps://doi.org/10.34734/fzj-2026-02212
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