Nickel cobalt manganese NCM622 precursor (single crystal)
Nickel cobalt manganese NCM622 precursor (single crystal)
Nickel cobalt manganese NCM622 precursor (single crystal)

Nickel cobalt manganese NCM622 precursor (single crystal)

$60.41
Chemicalformular:
Ni0.6Co0.2Mn0.2(OH)2
Model:
MA-EN-CA-0054
item_No
Specifications
Price
MA-EN-CA-005401
20g
$60.41

Details

This precursor is designed for the synthesis of single-crystal NCM622 cathode materials, with a controlled composition of nickel, cobalt, and manganese in a 6:2:2 ratio. It exhibits a narrow particle size distribution around 3 µm, high specific surface area, and low impurity levels, supporting consistent electrochemical behavior after lithiation and sintering. The single-crystal morphology contributes to improved structural integrity and cycle stability in the final cathode. Commonly used in lithium-ion battery research, it enables precise investigations into composition-structure-performance relationships. As a lithium-free precursor, it requires the addition of lithium salts and subsequent thermal treatment to obtain active cathode material with electrochemical properties.

 

Number Test item Unit Specifications Actual
measurement
results
Testing
methods or
instruments
1 Chernical
composition
Me (wt%) 62.5±1.0 61.78

ICP

Me represents the total amount of transition metals.

2 Ni (wt%) 40.0±2.0 39.80
3 Co (wt%) 13.0±1.0 12.55
4 Mn (wt%) 11.0±1.0 11.43
5 Mg (ppm) ≤21.0 6.21
6 Cu (ppm) ≤0.0001 0.00
7 S (ppm) ≤1200.0 845.30
8 Na (ppm) ≤140.0 46.20
9 Ca (Ppm) ≤30.0 19.60
10 Magnetic
substancc
MI (ppb) ≤50.0 21.63 Acid
burctte
11 Physical
characteristics
Par licle
size
distribution
D10 (μm) ≥1.5 2365  
12 D50 (μm) 2.5~3.5 3.045 Laser
particle sive
analyzer
13 D90 (μm) ≤6.0 3.965  
14 BET (m2/g) ≥15.0 20.69 Fully
automatic
sur face
area and
porosity
analyzer
15 TD (g/cm3) ≤2.5 1.65 Vihrating
density
measuring
instrument
16 Moisture (ppm) ≤7000 6654.0 Moisture
meter

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The precursor itself does not contain lithium ions and lacks electrochemical properties such as capacity and efficiency;

When producing finished products for sintering, lithium salts, additives, etc. need to be added. The amount of addition, mixing and sintering process will cause differences in electrochemical performance, so specific performance judgments cannot be provided. Please be informed.