MSE PRO Sodium Battery Dry Pouch Cell
Couldn't load pickup availability
Still have questions? Ask our experts!
MSE PRO Sodium Battery Dry Cell
Introduction
Sodium-ion pouch cells without electrolyte injection are designed for laboratory testing, material evaluation, and prototype development. Their electrolyte-free configuration allows researchers to customize electrolyte formulations and optimize cell performance for different materials and experimental conditions.
Specifications
| SKU | BR0073926 | BR0073927 |
| Battery types | Sodium nickel iron manganate / hard carbon 1Ah | Prussian Blue System 1.2Ah |
| Battery cell specifications | 425868 | 508764 |
| Cell body length (mm) | 68 | 87 |
| Cell body height (mm) | 58 | 64 |
| Total cell length (mm) | 130 | 140 |
| Total cell height (mm) | 75 | 112 |
| Total cell thickness (mm) | ≤4.2 | ≤6.0 |
| Cell structure | Stacked pieces | Stacked pieces |
| Positive electrode – Material | Sodium nickel iron manganate | Prussian blue |
| Positive electrode – loading | 95.5% | 92% |
| Positive electrode – Single-sided surface density (mg/cm²) | 13.84 | 12.4 |
| Positive electrode – Compacted density (g/cc) | 2.70 | 1.4 |
| Positive electrode – Capacity (mAh/g) | 127 | 140 |
| Negative electrode – Material | Imported hard carbon fiber (5µm) | / |
| Negative electrode – loading | 95.5% | / |
| Negative electrode – Single-sided surface density (mg/cm²) | 6.42 | / |
| Negative electrode – Compacted density (g/cc) | 0.95 | / |
| Negative electrode – Capacity (mAh/g) | 300 | / |
Note:
Rubber protective sleeve provides protection and needs to be removed during testing. The tab near the air bag is the negative tab. When using the clamp for testing, be careful not to clamp the tab rubber.
This product must be tested according to recommended testing methods and electrolytes to achieve the desired performance.
Because testing methods and electrolytes significantly impact battery performance, changing the testing method or electrolyte may degrade electrode performance. Please verify this information before purchasing.
Test Condition:
| Battery types | Sodium nickel iron manganate / hard carbon 1Ah | Prussian Blue System 1.2Ah |
| Voltage range (V) | 1.50–3.95 | 2.0–3.65 |
| Recommended injection volume (g) | 6 | 7.2–9.6 |
| Recommended electrolyte model | KLD-NF96F | KLD-NF96F |
| Hot pressing Capacity requirements – Transformation into steps | 45°C, 0.9MPa;1) Let it rest for 60 minutes (to allow the main body of the battery cell to reach 45°C).2) 0.05C constant current charging for 8 hours to stop;2) Let it sit for 1 minute;3) Charge at 0.1C constant current for 3 hours until termination; | 45°C, 0.9MPa;1) Let it rest for 60 minutes (to allow the main body of the battery cell to reach 45°C).2) 0.05C constant current charging for 8 hours to stop;2) Let it sit for 1 minute;3) Charge at 0.1C constant current for 3 hours until termination; |
| Hot pressing Capacity requirements – Capacity separation process | 25°C, 0.9MPa;1) Let it sit for 3 minutes;2) Charge to 3.95V using a constant current and constant voltage method at 0.2C, with a cutoff current of 0.05C.2) Let it sit for 3 minutes;3) Discharge at a constant current of 0.2C to 1.50V;(Complete the first charge and discharge cycle and calculate the first effect) | 25°C, 0.9MPa;1) Let it sit for 3 minutes;2) Charge to 3.65V using a constant current and constant voltage method at 0.2C, with a cutoff current of 0.05C.2) Let it sit for 3 minutes;3) Discharge at a constant current of 0.2C to 2.00V;(Complete the first charge and discharge cycle and calculate the first effect) |
| No hot pressing composition conditions | 25°C, 0.2MPa;1) Let it sit for 3 minutes;2) Charge to 3.95V at a constant current of 0.05C, with a cutoff current of 0.02C;3) Let it sit for 3 minutes;4) Discharge at a constant current of 0.2C to 1.50V;(Complete the first charge and discharge cycle and calculate the first effect) | 25°C, 0.2MPa;1) Let it sit for 3 minutes;2) Charge to 3.65V at a constant current of 0.05C, with a cutoff current of 0.02C;3) Let it sit for 3 minutes;4) Discharge at a constant current of 0.2C to 2.00V;(Complete the first charge and discharge cycle and calculate the first effect) |
| Loop test conditions | 1) Rest for 3 minutes;2) Increase voltage from 0.5°C (CC) to 3.90V, then increase voltage from 0.02°C or 0.05°C;3) Rest for 3 minutes;4) Increase voltage from 1.0°C (DC) to 1.50V;Repeat steps 1–4 for XX cycles. | 1) Rest for 3 minutes;2) Increase voltage from 0.5°C (CC) to 3.65V, then increase voltage from 0.02°C or 0.05°C;3) Rest for 3 minutes;4) Increase voltage from 1.0°C (DC) to 2.00V;Repeat steps 1–4 for XX cycles. |
MSE offers a range of battery consumables. Please contact us for bulk price of larger quantities.