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BN-O3A O3 Type Sodium Ion Battery Positive Electrode Material

Categories Sodium Ion Battery Cathode Material
Brand Name: XWELL
Model Number: BN-O3A
Certification: CE
Place of Origin: CHINA
MOQ: 100g
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 1 t/month
Delivery Time: 5-7 days
Packaging Details: Plastic package
Na: 20.6 ± 0.3%
Ni: 17.6 ± 0.3%
Fe: 16.7 ± 0.3%
Mn: 16.5 ± 0.3%
D10: 7.0 ± 0.5um
D50: 9.2 ± 0.5um
D90: 11.5 ± 0.5um
Tap density: ≥1.9g/cm³
Price: 1-1000USD/Negotiable
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BN-O3A O3 Type Sodium Ion Battery Positive Electrode Material

Sodium Nickel Iron Manganese Oxide BN-O3A O3 Type Sodium Ion Battery Positive Electrode Material


Overview​

​O3-type NaNiFeMnO₂ (BN-O3A)​​ is a layered transition metal oxide cathode material for sodium-ion batteries, with the general formula NaNiₓFeᵧMn₁₋ₓ₋ᵧO₂. It is characterized by its high theoretical capacity (~140 mAh/g at 0.1C), cost-effectiveness (abundant Fe/Mn resources), and structural stability. The "O3" denotes a trigonal prismatic coordination of Na⁺ ions, enabling high Na⁺ content but suffering from irreversible phase transitions during cycling.

​Key Features​

  1. ​Composition & Structure​​:

    • Typical stoichiometry includes NaNi₁/₃Fe₁/₃Mn₁/₃O₂ (111-type) or variants like NaNi₀.₄Fe₀.₂Mn₀.₄O₂.
    • Transition metals (Ni, Fe, Mn) synergize: ​​Ni​​ boosts capacity, ​​Mn​​ stabilizes structure, and ​​Fe​​ balances cost/performance.
  2. ​Challenges​​:

    • ​Irreversible phase transitions​​ (>4.0V) lead to structural degradation.
    • ​Air sensitivity​​: Reacts with moisture, forming electrochemically inactive NaOH/Na₂CO₃.
    • ​Jahn-Teller distortion​​ from Mn³⁺ and Ni⁴⁺-electrolyte side reactions.
  3. ​Performance Optimization​​:

    • ​Doping​​ (e.g., Ti, Mg, Cu): Stabilizes structure, suppresses phase transitions, and enhances Na⁺ diffusion.
    • ​Surface coating​​ (e.g., Al₂O₃, NaTi₂(PO₄)₃): Mitigates electrolyte corrosion and improves cyclability.
    • ​Morphology control​​: Spherical secondary particles (4–10 μm) with nano-sized primary grains enhance kinetics.

​Applications & Prospects​

BN-O3A is a promising candidate for ​​large-scale energy storage​​ (e.g., grid storage, EVs) due to its low cost and compatibility with existing Li-ion battery manufacturing. Recent advances in ​​high-entropy doping​​ and ​​P/O hybrid phases​​ aim to further improve energy density (>420 Wh/kg) and cycle life (>500 cycles at 1C)

Specifications​

ItemUnitSpecificationValueReference StandardTest Equipment Model
Nawt%20.6 ± 0.320.7GB/T 27598-2011Agilent 5800
Niwt%17.6 ± 0.317.6GB/T 27598-2011-
Fewt%16.7 ± 0.316.7--
Mnwt%16.5 ± 0.316.5--
D10μm7.0 ± 0.57.9GB/T 19077-2016-
D50μm9.2 ± 0.59.7GB/T 19077-2016Beckman Coulter LS 13320
D90μm11.5 ± 0.511.8GB/T 5162-202X-
Tap densityg/cm³≥1.92.0-Tap Density Testing Instrument
SSA (BET)m²/g≤2.00.5GB/T 19587-2004-
2TFPDg/cm³--GB/T 24533-2019MYCRO Carver 4350
0.1C CapacitymAh/g135 ± 2136Evaluate method in half cell-
1C CapacitymAh/g130 ± 2132Electrolyte: 1M NaPF6 in esters solvent-
Efficiency---Voltage window: 2.0-4.0V-
50th Retention (1C)%-90--
NaOHwt%0.30.3-METTLER TOLEDO G20

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