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Updated: May 31, 2026

Characterization of Electrode Materials for Lithium Ion and Sodium Ion Batteries Using Synchrotron Radiation Techniques
Published on: November 11, 2013
Indium-Mediated Glue-Like Interlayer Enables Stable High-Capacity Flexible Sodium Metal Batteries
Xinyan Li1, Shujing Wen1, Junhua Zhou1
1Department of Applied Biology and Chemical Technology, Faculty of Science, The Hong Kong Polytechnic University, Hung Hom, Hong Kong SAR, China.
Abstract:
Na metal is considered as a highly promising anode material for Na batteries, owing to its high theoretical capacity (1166 mAh g-1) and low redox potential (-2.71 V vs. SHE). However, its practical application is significantly hindered by interfacial instability and dendrite formation arising from uneven Na deposition, which severely compromise its cycling lifespan. Herein, we develop a robust three-dimensional glue-like interlayer via in situ electrochemical conversion of CuInS2 on a flexible Cu current collector. This process yields a Na2S/Na5InS4/Cu composite interlayer of strong interphase connections, ensuring tight interfacial connections and exceptional mechanical stability throughout extended cycling, thereby effectively mitigating interfacial degradation. With this interlayer, the Na metal anode achieves a high Coulombic efficiency over 99.4%, outstanding symmetrical cell stability exceeding 2400 hours, and excellent high-capacity full cell cycling (95.3% capacity retention after 1000 cycles). Flexible pouch cells retain 95% capacity over 200 cycles and endure more than 10,000 bending.
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