Sodium Nickel Manganate MS-PMT-1 — P2-type Sodium-Ion Battery Cathode Material with 117.31mAh/g Capacity, 95% Initial Efficiency, and 1.586g/cm³ Tap Density
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- Sodium Nickel Manganate MS-PMT-1 — P2-type Sodium-Ion Battery Cathode Material with 117.31mAh/g Capacity, 95% Initial Efficiency, and 1.586g/cm³ Tap Density
Model:MS-PMT-1
Appearance:Black Powder
Specific Surface Area:0.843m²/g
Tap Density:1.586g/cm³
Gram Specific Capacity:117.31mAh/g
Initial Efficiency:95%
MOQ: 200g
Leading time: 5-7 working days
SKU: LIC/LZC Category: Solid State Battery Raw Material
Sodium Nickel Manganate MS-PMT-1 — Sodium-Ion Battery Cathode Material Sodium Nickel Manganese Oxide P2-type
As a key cathode material for next-generation sodium-ion batteries (SIBs), Sodium Nickel Manganate MS-PMT-1 stands out for its excellent electrochemical performance, cost-effectiveness, and environmental friendliness. Tailored for energy storage and low-to-medium power applications, it addresses the core demands of the sodium-ion battery industry for high stability and sustainable materials. The maximum charging voltage can reach 4.2V, resulting in a significant increase in energy density.
Core Performance Advantages
- Superior Electrochemical Stability Exhibits outstanding cycle performance with a capacity retention rate of over 85% after 1000 charge-discharge cycles at 1C rate, ensuring long-term reliability for battery systems.
- Optimized Sodium-Ion Diffusion The well-structured crystal lattice promotes efficient sodium-ion intercalation/deintercalation, delivering a reversible specific capacity of ~120-140 mAh/g, suitable for medium-energy-density application scenarios.
- Excellent Thermal Safety Maintains structural integrity at high temperatures (up to 200°C), reducing risks of thermal runaway and enhancing the safety of sodium-ion battery packs.
- Cost-Effective & Sustainable Utilizes abundant and low-cost nickel and manganese resources (no reliance on scarce cobalt), lowering the overall material cost of sodium-ion batteries and aligning with green energy development trends.
Material Specifications
SPECIFICATION |
UNIT |
INDEX |
TYPICAL VALUE |
|---|---|---|---|
| Appearance | / | Black Powder | / |
| Tap Density | g/cm³ | ≥1.20 | 1.586 |
| Specific Surface Area | m²/g | 0.3-1.0 | 0.843 |
| H₂O | ppm | ≤500 | 463 |
| D10 | μm | ≥2.00 | 3.157 |
| D50 | μm | 8.00±2.00 | 10.473 |
| D90 | μm | ≤24.00 | 25.969 |
| Na | wt% | 20.50±21.00 | 20.25 |
| Ni+Mn | wt% | 50.50±1.00 | 50.08 |
| pH | / | ≤13.00 | 12 |
| Gram Specific Capacity | mAh/g | ≥100.0 | 117.31 |
| Initial Efficiency | % | ≥92 | 95 |
Why Choose MS-PMT-1?
MS-PMT-1 sodium nickel manganate cathode material combines performance, cost, and safety—three critical factors for sodium-ion battery commercialization. We adhere to strict quality control standards in the production process, ensuring consistent particle size distribution, high purity, and stable electrochemical performance for each batch. Customization services for particle size, tap density, and other parameters are also available to meet diverse customer requirements.


