NCM622 Cathode Precursor (Nickel-Cobalt-Manganese) is prepared by the co-precipitation method after adjusting the molar ratio of transition metal ions. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality NCM622 Cathode Precursor (Nickel-Cobalt-Manganese).
Related products: Lithium Iron Phosphate Powder LiFePO4, LFP, Lithium Cobalt (III) Oxide Powder (LCO Powder), Lithium Manganese Oxide Powder (LMO Powder), NCM523 Cathode Precursor, NCM811 Cathode Precursor
NCM622 Cathode Precursor (Nickel-Cobalt-Manganese) is prepared by the co-precipitation method after adjusting the molar ratio of transition metal ions. Stanford Advanced Materials (SAM) has rich experience in manufacturing and supplying high-quality NCM622 Cathode Precursor (Nickel-Cobalt-Manganese).
Related products: Lithium Iron Phosphate Powder LiFePO4, LFP, Lithium Cobalt (III) Oxide Powder (LCO Powder), Lithium Manganese Oxide Powder (LMO Powder), NCM523 Cathode Precursor, NCM811 Cathode Precursor
NCM622 Cathode Precursor (Nickel-Cobalt-Manganese) is prepared by the co-precipitation method after adjusting the molar ratio of transition metal ions. They are used to synthesize NCM Lithium Nickel Cobalt Aluminum Oxide Cathode. Most of the precursors have sphere morphology.
|
Item |
Unit |
Value |
|
D10 |
um |
5.0 |
|
D50 |
um |
9.9 |
|
D90 |
um |
18.3 |
|
BET |
m2/g |
6.2 |
|
Tap Density |
g/cm3 |
2.27 |
|
Moisture |
wt% |
0.34 |
|
Ni |
wt% |
38.4 |
|
Co |
wt% |
12.8 |
|
Mn |
wt% |
11.9 |
|
Ni+Co+Mn |
wt% |
63.1 |
|
Magnetic Impurity (Fe+Cr+Zn) |
ppb |
58 |
NCM622 Cathode Precursor (Nickel-Cobalt-Manganese) is applied in the lithium-ion battery for the electric vehicle, electric tool, and 3C device.
Our NCM622 Cathode Precursor (Nickel-Cobalt-Manganese) is carefully handled during storage and transportation to preserve the quality of our product in its original condition.