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High Capacity Prussian White Cathode Material For Sodium Ion Batteries

Categories Sodium Ion Battery Cathode Material
Brand Name: XWELL
Model Number: Na2MnFe(CN6)
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
Packaging: Sealed container
Appearance: Light gray-white powder, free of impurities, agglomeration, or large particles
SEM: 3,000× magnification
Tap Density (g/cm³): 0.6
Specific Surface Area (m²/g): 25
Na Content (%): 27±1%
Fe+Mn Content (%): 55±1%
Specific Capacity (mAh/g): 158
Price: 1-1000USD/Negotiable
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High Capacity Prussian White Cathode Material For Sodium Ion Batteries

High-Capacity Prussian White (NaₓFe[Fe(CN)₆]) Cathode Material for Sodium-Ion Batteries


​1. Introduction​

Prussian White (PW, NaₓFe[Fe(CN)₆]) is a ​​low-cost, high-capacity cathode material​​ for sodium-ion batteries (SIBs). As a derivative of Prussian blue analogs (PBAs), it leverages an open framework structure with ​​fast Na⁺ diffusion​​ and ​​excellent structural stability​​, making it ideal for ​​large-scale energy storage systems​​.

​2. Key Features​​​

  • ​Chemical Formula​​: NaₓFe[Fe(CN)₆] (typically 1.6 ≤ x ≤ 2.0 for full Na⁺ insertion)
  • ​Crystal System​​: Cubic (Fm-3m space group)
  • ​Framework​​: Open 3D channels enable rapid Na⁺ migration (10⁻¹⁰–10⁻¹¹ cm²/s diffusion coefficient).

3. Technical Specifications & Test Data​

No.ItemRequirementTest MethodResult
1PackagingSealed containerVisual inspectionCompliant
2AppearanceLight gray-white powder, free of impurities, agglomeration, or large particlesVisual inspectionCompliant
3D10 (μm)0.39Laser particle analyzerCompliant
4D50 (μm)0.80Laser particle analyzerCompliant
5D90 (μm)1.6Laser particle analyzerCompliant
6Tap Density (g/cm³)0.6Tap density tester0.8
7Specific Surface Area (m²/g)6.25BET nitrogen adsorption6.41
8Na Content (%)27±1%ICP-OES27.7%
9Fe+Mn Content (%)55±1%ICP-OES55.2%
11Specific Capacity (mAh/g)158Coin cell half-cell test145
12SEM3,000× magnificationProvided during R&D phaseCompliant

4. Material Advantages​

✅ ​​Ultra-Low Cost​​: Iron/cyanide-based precursors reduce raw material expenses by ~60% vs. layered oxides.
✅ ​​High Safety​​: Strong Fe-C≡N bonds suppress thermal runaway risks.
✅ ​​Scalable Synthesis​​: Simple co-precipitation process (room temperature, aqueous solutions).

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