Skip to product information
O3-Type Layered Oxide NaNi0.4Fe0.2Mn0.4O2 (NFM424) Powder for Na-Ion Battery Cathode, 100 g/bottle, CSIBCNFM424

O3-Type Layered Oxide NaNi0.4Fe0.2Mn0.4O2 (NFM424) Powder for Na-Ion Battery Cathode, 100 g/bottle, CSIBCNFM424

$149.00 USD
In Stock SKU: CSIBCNFM424
Use your own shipping account?

We support FedEx, UPS, and DHL third-party billing for institutional customers.

Place your order first, then email shipping@echemsupplies.com with your account details and order number. We'll generate the label using your account and refund your shipping charges, less a handling fee.

Review third-party shipping terms →


NaNi0.4Fe0.2Mn0.4O2 (often commercially referred to as NFM424) is one of the most prominent, cost-effective intercalation cathode materials for sodium-ion batteries (SIBs). It belongs to the group of O3-type transition metal layered oxides, which have attracted heavy industrial interest due to their high initial sodium content, simple processing path, and the omission of expensive, supply-constrained cobalt (Co).

O3 phase defines the local environment and structural stacking sequence of the material: O (Octahedral): The Na+ ions occupy octahedral interstitial sites between the transition metal oxygen (TM-O)2) slabs. There are three distinct TM-O2 layers per unit cell repeat cycle along the c-axis, exhibiting an ABCABC... oxygen packing sequence.

Part Number

CSIBCNFM424 (C-SIB-C-NFM424)

Purity

>99.9% (Ni:Fe:Mn=4:2:4)

 Particle Size Distribution

D10: 2.94 um;  D50 =5.65 um;  D90 = 9.14 um

Tap Density 1.50 g/cm3
pH 11.87
Electrochemical Performance

CR2032, 2.0-4.2 V

Discharge Capacity: ≥155 mAh/g (0.1C); ≥140 mAh/g (1C)

Columbic Efficiency (1st cycle): 97%

Capacity Maintenance (100 cycles): ~96% 

   

 

Notes: (1) Please store the NaNi0.4Fe0.2Mn0.4O2 cathode powder in a dry area (glovebox is preferred); (2) The battery precursor powder is highly recommended to be dried at 80-100°C in a vacuum oven for 6-12 h before use. 

References

  1. X. Li, et al. Preparation and Property Optimization of High Capacity O3-type NaNi0.4Fe0.2Mn0.4O2, J. Electrochem. Soc., 2024, 171, 080526
  2. X. Li, et al. Prilling and Coating Strategy to Synthesize High-Performance Spherical NaNi0.4Fe0.2Mn0.4O2 Cathode Materials for Sodium Ion Batteries, Langmuir 2024, 40, 35, 18610–18618

You may also like