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February 11, 2026Nature Communications8 citationsOpen Access

Tailoring sodium and oxygen mixed-ion conduction in the A-site non-stoichiometric NaNbO3-based ceramics

ZLZhiyong LiuCXClaire M. XiangPRPengrong Ren

Key Points

  • To explore the regulation of sodium and oxygen ion conduction in non-stoichiometric NaNbO3-based ceramics.
  • Synthesis of Na0.96xCa0.04Nb0.96Zr0.04O3-δ ceramics with varying sodium content.
  • Crystal structure analysis using X-ray diffraction.
  • Electrical property assessments to determine ion conduction characteristics.
  • Higher sodium content shifts ion defect characteristics from vacancies to interstitials.
  • Changes in NbO6 octahedra affect conduction pathways for Na+ and O2− ions.
  • Na-deficient samples rely on O2− ions, while Na-excess samples show increased Na+ ion dominance.

Abstract

Abstract Tailoring the electronic or ionic conduction properties of solid-state electrolytes with precision is essential to fulfilling the functional demands of electrochemical energy storage and conversion technologies. Here, the synergistic regulation of Na + and O 2− ions conduction in the Na 0.96 x Ca 0.04 Nb 0.96 Zr 0.04 O 3- δ conductor is achieved by the non-stoichiometric ratio strategy. Crystal structure and electrical property analyses reveal that all samples feature a Pbma orthorhombic structure. With rising Na content, the defect characteristics shift from vacancies to interstitials, the NbO 6 octahedra experience a change from being compressed to normal and then to being obliquely flattened, which leads to an expansion of the corresponding interstitials in the Na-O-Na and Na-O-Nb networks. By changing the structures of these three types of polyhedron and networks, the conduction channels of Na + and O 2− ions as well as electrons can be effectively regulated. The O 2− ions are the main charge carriers for Na-deficient samples, stoichiometric samples feature the mixed O 2− ions and intrinsic electrons, while Na⁺ ions become the dominant carriers for Na-excess samples. This work highlights the important role of lattice defects and oxygen octahedral distortions/twisting on the conductivity, offering insights into the design of and Na + /O 2− ions migration pathways in solid-state ion conductors.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/698c1cd3267fb587c655f9c7https://doi.org/10.1038/s41467-026-69428-7
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