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January 17, 2026Nano Letters0 citations

Intermolecular Stabilization Enables Long-Life, Low-Temperature-Resilient Amino-Anthraquinone Anodes for Sodium-Ion Batteries

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YQYuanyuan QuanWDWenwen DengQMQianyi Ma

Key Points

  • The study aims to enhance the durability and performance of sodium-ion battery anodes through molecular engineering of organic materials.
  • Developed a bis-anthraquinone anode (DABT) with amino groups for enhanced stability.
  • Tested performance metrics like Coulombic efficiency and capacity retention over cycling.
  • Conducted ex situ characterizations to analyze molecular transformations during cycling.
  • DABT shows an initial Coulombic efficiency of 98% and 79% capacity retention after 2500 cycles.
  • Achieved ∼245 mAh g-1 capacity at an average voltage of ∼1.54 V.
  • Full cells with DABT and Na3V2(PO4)3 cathode retain over 60% capacity after 500 cycles at 5C, and 84% capacity at -20 °C after 100 cycles.

Abstract

Organic electrode materials (OEMs) are promising for sodium-ion batteries but often suffer from dissolution and poor durability. We report a bis-anthraquinone anode, DABT, in which amino groups lower the redox potential and form hydrogen bonds to suppress dissolution. DABT delivers ∼245 mAh g-1 at an average voltage of ∼1.54 V, with an initial Coulombic efficiency of 98% and 79% capacity retention after 2500 cycles at 2C. Ex situ characterizations reveal a reversible C═O ↔ C-O conversion, coordinating Na+ at four carbonyl sites. Paired with a Na3V2(PO4)3 cathode, the full cell achieves 160 mAh g-1 at 0.5C with an average voltage of ∼1.5 V, retaining >60% capacity after 500 cycles at 5C. Notably, the DABT//Na3V2(PO4)3 full cell retains 84% capacity at -20 °C after 100 cycles, underscoring robust low-temperature performance. This study provides a concise molecular-engineering strategy for high-performance organic anodes and advances the practical deployment of SIBs.

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Cite This Study

Quan et al. (2026) studied this question.

synapsesocial.com/papers/696b2655d2a12237a9349a8dhttps://doi.org/10.1021/acs.nanolett.5c05364
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