Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)
Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)
Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)
Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)
Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)

Sodium-ion Battery Cathode Electrode Sheet (NFM Sodium Nickel Iron Manganese Oxide NT03)

$90.61
item_No
Specifications
Price
NT03XX
Single-sided (5 pcs/pack) (Calendered)
$90.61

Details

This product is a nickel–iron–manganese sodium oxide cathode sheet (model NT03XX) developed for sodium-ion battery research. Based on layered oxide chemistry, it is designed for use as a positive electrode material in coin cells or pouch cells. The sheet is single-side coated and available in calendered or final-calendered versions, each packaged in sets of five pieces. Calendering optimizes electrode density and mechanical integrity, which is important for consistent electrochemical testing. The material supports standard active mass and capacity calculations using coating surface density and active material ratio, as outlined by the supplier. Common applications include evaluating specific capacity, rate performance, and cycling stability in sodium-ion systems. Proper storage under vacuum or double-sealed conditions is recommended to prevent degradation, especially for high-nickel or sodium-based cathodes. This product is intended for R&D use in battery materials laboratories.
Canrd 10*10cm 5 sheets/pack   Coating
NO. Electrode Name Model Main Material Active Material Capacity (mAh/g) Loading Areal Density (mg/cm²) Areal Capacity (mAh/cm²)
1 NCA Electrode SY51 NCA-S (Nickel Cobalt Aluminum Oxide) 195  94.50% 17.66  3.25 
2 Ni90 Electrode SY41 Ni90 Single Crystal NCM 195  94.50% 9.50  1.75 
3 NCM811 Electrode SY33 NCM811 Single Crystal 188  94.50% 9.20  1.63 
4 NCM811 Electrode SY34 188  94.50% 21.50  3.82 
5 NCM622 Electrode SY25 NCM622 Single Crystal-B 168  96.70% 10.00  1.62 
6 NCM622 Electrode SY24 168  96.70% 21.60  3.51 
7 NCM523 Electrode SY15 NCM523 165  94.00% 19.70  3.06 
8 NCM523 Electrode SY13 NCM523 165  94.00% 10.50  1.63 
9 LCO Electrode LC02 High Voltage Lithium Cobalt Oxide-Z-4.45V 178  96.40% 10.00  1.72 
10 LRM Electrode FL01 Lithium-rich Manganese-based-E 280  95.00% 5.96  1.59 
11 Graphite Electrode SM02 Natural Graphite (Standard)-A 340  95.70% 5.80  1.89 
12 Fast Charging Graphite Electrode SM04 Fast Charging Graphite-B 350  96.70% 5.60  1.90 
13 Silicon Carbon Electrode SC02 Silicon Carbon Anode 1800 (Porous Carbon Deposited Silicon) 420  95.00% 4.80  1.92 
14 NFM Electrode NT02 Sodium Nickel Iron Manganese Oxide 127  95.50% 12.27  1.49 
15 NFM Electrode NT03 127  95.50% 8.00  0.97 
16 Hard Carbon Electrode YT02 Imported Hard Carbon (5 μm) 300  95.50% 6.00  1.72 
17 LFP Electrode LF07 Lithium Iron Phosphate
(High Compaction Density)
150  91.50% 12.30  1.69 
18 LNMO Electrode NM01 High Voltage Lithium Nickel Manganese Oxide-B 130  96.00% 7.50  2.00 
19 NFPP Electrode NF01 Sodium Iron Phosphate Pyrophosphate 100  93.50% 15.30  1.43 
20 Vanadium Pentoxide Electrode VO02 Vanadium Pentoxide 300  80.00% 5.00  1.20 
21 Manganese Dioxide Electrode MO01 Manganese-based or Vanadium-based Material 100  80.00% 5.00  /
22 Zinc Negative Electrode ZA01 Pure Zinc Powder / Alloy Zinc Powder / 70.0%–96.0% 5.0–15.0 /

MOQ for Custom Small Electrode Sheets: 10*10cm/pcs,5cs/pack,1pack

To place an order or request a quotation, please Contact Us.

 



Packaging, Transportation, and Storage

1. Vacuum storage or double-sealed packaging in a glove box, especially for high-nickel and sodium cathode materials. Improper storage can increase battery internal resistance.

2. Electrodes not rolled: Roll the electrodes according to the recommended compaction density.

3. Coating surface density must be determined based on actual weighing results. Coating surface density does not include the current collector.

4. Actual weighing calculation of active material mass (mg): = (Small disc weight mg - Current collector surface density mg/cm² * Small disc area cm²) * Active material ratio

5. Theoretical active material amount (mg): = Coating surface density mg/cm² * Active material ratio * Small disc area cm²

6. Theoretical surface capacity mAh/cm²: = Coating surface density mg/cm² * Active material ratio * Granular capacity mAh/g ÷ 1000

7. When calculating granular capacity, calculate based on the actual weighed amount of active material. Due to tolerances in coating surface density, the actual weighing shall prevail.

8. Creases: Single-sided electrodes are prone to curling after rolling. Flattening and packaging may cause creases.