Layered Sodium Nickel Iron Manganese Oxide (XN-33S)
- High capacity
- Long cycle life
$350.00
P2+O3 type layered sodium nickel iron manganese oxide
Model: XN-33S
Advanced Layered Oxide Cathodes for Sodium-Ion Batteries
Our layered oxide cathode materials deliver high reversible capacity, excellent rate capability, and outstanding cycling stability. Engineered with a precise crystal structure and optimized particle morphology, they enable fast sodium-ion diffusion and long cycle life. Manufactured with earth-abundant elements, they offer a cost-effective, sustainable alternative to lithium-based systems. Ideal for stationary storage, low-speed EVs, and industrial applications. Consistent quality, scalable supply, and strong technical support—partner with us to accelerate your next-generation sodium-ion battery solutions.
| Parameter | Value |
|---|---|
| D10 (μm) | 2.36 |
| D50 (μm) | 4.89 |
| D90 (μm) | 9.76 |
| pH | 13.09 |
| H2O(wt%) | 0.0205 |
| 0.1C Capacity(mAh/g) | 128.50 |
| Tap Density(g/cm3)1.64 |
Our company specializes in advanced battery materials for both lithium-ion and sodium-ion systems, offering a comprehensive range of services to support customers from development to mass production. We provide high-performance cathode, anode, and electrolyte materials tailored to diverse application needs, including consumer electronics, electric vehicles, and stationary energy storage.
Beyond material supply, we offer expert product selection guidance to help customers identify optimal formulations for specific performance targets. Our technical service team provides ongoing support in material characterization, cell design optimization, and failure analysis. Additionally, we deliver turnkey production line consulting—covering plant layout, equipment selection, process parameter setup, and quality control systems—enabling seamless scale-up from lab to gigafactory. With deep industry expertise and a commitment to innovation, we serve as a one-stop partner for accelerating next-generation battery commercialization.




