LiNiCoMnO2 (Lithium Nickel Manganese Cobalt Oxide) powder for Li-ion battery cathode raw materials (Ni:Co:Mn=8:1:1)
| SPECIFICATION OF SINGLE CRYSTAL NMC811 | |||
|---|---|---|---|
| ITEM | UNIT | VALUE | INSTRUMENT |
| D10 | um | ≥1.00 | Malvern Instruments Ltd MASTERSIZER2000 Metrohm 831-860 |
| D50 | um | 4.5± 1.5 | |
| D90 | um | ≤15.0 | |
| D99 | um | ≤20.0 | |
| Moisture | ppm | ≤500 | |
| Tap Density | g/cm3 | ≥1.4 | Micromeritics GeoPyc 1360 |
| SSA | m2/g | ≤1.5 | Micromeritics Tristar 3000 |
| PH | / | ≤12.00 | METTLER TOLEDO FE30 |
| OH | wt% | ≤0.5000 | METTLER TOLEDO G20 |
| CO 2- 3 | wt% | ≤0.5000 | |
| Capacity | mAh/g | ≥194.0 | CR2016 Coin Cell Evaluating |
| Efficiency | % | ≥86.0 | |
NMC Ni90 is a high-nickel Lithium Nickel Manganese Cobalt Oxide powder active material specifically engineered for formulating advanced cathodes in high energy-density rechargeable lithium-ion batteries.
By increasing the nickel content to around 90%, the energy density and overall capacity of the battery cell are significantly enhanced, offering superior performance for electric vehicles and high-demand applications.
NMC Ni90 powder is highly sensitive to moisture and ambient conditions. It should be kept tightly sealed in a dry, vacuum package or handled inside a glove box with an inert gas environment to prevent surface degradation.
The typical D50 particle size is 4.5 ± 1.5 um, optimized to balance structural stability, rate capability, and electrode packing density during the slurry coating process.
Yes, it is designed for a variety of lithium-ion cell architectures, including coin cells, cylindrical cells, pouch cells, and prismatic cells, widely used in research and commercial production.