
Sodium Vanadate Phosphate (Na₃V₂(PO₄)₃, abbreviated as NVP) is a high-performance cathode material widely used in sodium-ion batteries. It features high specific capacity, excellent rate performance, and a long cycle life. The theoretical capacity of NVP can reach 117.6 mAh/g, corresponding to a voltage plateau of 3.4 V (relative to the metallic Na electrode), which makes it very suitable for large-scale sodium-ion energy storage technologies.
| Product Name | Code | Areal Density | Single/Double Side | Current Collector Areal Density | Active Material Proportion | Calendering Density | Coating Process |
|---|---|---|---|---|---|---|---|
| NVP Sodium Phosphate Electrode | NVP-S01 | 5mg/cm² | Single Side | 3.63mg/cm² | 93.50% | 1.5g/cm³ | Wet Method |
| NVP Sodium Phosphate Electrode | NVP-S02 | 10mg/cm² | Single Side | 3.63mg/cm² | 93.50% | 1.5g/cm³ | Wet Method |
| NVP Sodium Phosphate Electrode | NVP-S03 | 20mg/cm² | Single Side | 4.2mg/cm² | 94.50% | 1.3g/cm³ | Dry Method |
| NVP Sodium Phosphate Electrode | NVP-S04 | 29.1mg/cm² | Single Side | 4.2mg/cm² | 94.50% | 1.3g/cm³ | Dry Method |
| NVP Sodium Phosphate Electrode | NVP-D01 | 20mg/cm² | Double Side | 3.63mg/cm² | 93.50% | 1.8g/cm³ | Wet Method |
| NVP Sodium Phosphate Electrode | NVP-D02 | 40mg/cm² | Double Side | 4.2mg/cm² | 94.50% | 1.3g/cm³ | Dry Method |
| NVP Sodium Phosphate Electrode | NVP-D03 | 58.2mg/cm² | Double Side | 4.2mg/cm² | 94.50% | 1.3g/cm³ | Dry Method |
Batteries with NVP as the cathode have a high energy density (over 280Wh/kg), suitable for high-energy-demand applications like electric vehicles. It may react with CO₂ and H₂O during charging, so it needs to be stored in a dry and low-humidity environment to avoid performance degradation.