MSE PRO Bi-Modal High Nickel NMC Lithium Nickel Manganese Cobalt Oxide (Ni:Co = 96:3), 1kg powder powder

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SKU: PO0073612
Regular price $ 1,511.95

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MSE PRO Bi-Modal High Nickel NMC Lithium Nickel Manganese Cobalt Oxide (Ni:Co = 96:3), 1kg powder

Product Features

Bi-modal high nickel NMC Ni96 lithium nickel manganese cobalt oxide (Ni:Co = 96:3) cathode powder is designed to provide ultrahigh energy output with good charge-discharge speed for specialty lithium-ion battery applications. Special surface treatments improve lifetime (>500 to 80% capacity retention at 100% DOD) and reduce gassing during battery operations. The bi-modal particle morphology enables good compaction density and improves processibility of electrode and battery cell fabrication. 

Specifications

Composition 

Li 

wt% 

ICP 

7.2 ± 0.3 

Ni+Mn+Co 

wt% 

59.0 ± 1.0 

Na 

ppm 

≤400 

S 

ppm 

≤1000 

Magnetic Impurities 

ppb 

≤100 

Surface excess lithium 

ppm 

Titration 

2000 ± 400 

Particle Size  

D10 

µm 

Particle size analyzer 

≥1.5 

D50 

µm 

8.0 ± 1.5 

D90 

µm 

≤18 

D99 

µm 

≤30 

Tapped Density 

g/cm3 

Density analyzer 

≥2.3 

Surface Area 

m2/g 

BET 

0.7 ± 0.2 

Moisture Content 

ppm 

Karl Fischer 

400 

pH 

/ 

pH meter 

11.75 ± 0.25 

Half Coin Cell Data 

Discharge Capacity 

mAh/g 

2.7–4.3V  

(vs. Li) 

25 oC 

≥230 (0.1C/0.1C) 

≥210 (0.1C/1C) 

First Coulombic Efficiency 

% 

≥92 (0.1C/0.1C) 

Pressed Density 

Commonly 3.2–3.7 g/cm3; 3.5 g/cm3 is recommended 

Electrode 

Example: CAM-SP-PVDF = 94:4:2 & Al foil 12 µm  

Packaging 

In dry air or vacuum sealed 

Storage 

Use by 24 months; keep away from heat, moisture, or direct sunlight  

Handling 

Material is hygroscopic and should be handled in dry environments (RH ≤ 1% at 25 oC) 

 Key Documents:

SDS Form

COA

References:

Jeon et al. - 2026 - Approaching the theoretical density limit of ultrahigh-nickel cathodes via cation-disorder-free 10-μm single-crystalline particles

Lee et al. - 2025 - Eliminating lattice collapse in dopant-free LiNi0.9Mn0.1O2 cathodes via electrochemically induced partial cation disorder

Park et al. - 2022 - Introducing high-valence elements into cobalt-free layered cathodes for practical lithium-ion batteries

Ryu et al. - 2024 - Near-surface reconstruction in Ni-rich layered cathodes for high-performance lithium-ion batteries

MSE offers a range of battery consumables. Please contact us for bulk price of larger quantities.