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Lithium-Rich Manganese-Based Li1.3Ni0.35Mn0.65O2.3 (LNMO) Powder for High-Voltage Li-Ion Battery Cathode, 100 g/bottle, CLIBCLRLNMO

Lithium-Rich Manganese-Based Li1.3Ni0.35Mn0.65O2.3 (LNMO) Powder for High-Voltage Li-Ion Battery Cathode, 100 g/bottle, CLIBCLRLNMO

$198.00 USD
In Stock SKU: CLIBCLRLNMO
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Li1.3Ni0.35Mn0.65O2.3 (LNMO) is a lithium-rich, cobalt-free cathode material that is highly significant in battery research because it belongs to a class that offers ultra-high specific capacity—potentially exceeding 250 mAh/g—which is well beyond the limits of conventional cathodes like NCM811.

The formula's unique stoichiometry indicates that it is a composite material structurally composed of two intergrown phases: 0.3 Li2MnO3 * 0.7 LiNi0.5Mn0.5O2. (1) Active Component (0.7): A layered LiNi0.5Mn0.5O2 (similar to NCM) that provides the initial high-voltage capacity. (2) Lithium-Rich Component (0.3): The Li2MnO3 component, which acts as the excess lithium reservoir and the source of the ultra-high capacity.

The advantage of the Li1.3Ni0.35Mn0.65O2.3 (LNMO) includes: (1) Ultra-High Specific Capacity; (2) High Energy Density; (3) Low Cost.

Part Number

CLIBCLRLNMO (C-LIB-C-LRLNMO)

Chemical Composition

Li: 9,7 wt%, Ni: 34.2 mol%, Mn: 65.7 mol%

 Particle Size Distribution

D10 = 7.7 um;  D50 = 9.2 um;   D90 = 11.1 um

Tap Density 2.34 g/cm3
Specific Area 1.73 m2/g
First Discharging Capacity

~206 mAh/g

First Columbic Efficiency

86.8% 

 

Notes: (1) Please store the LRLNMO powder in a dry area (glovebox is preferred); (2) The battery powder is highly recommended to be dried at 80-100°C in a vacuum oven for 6-12 h before use. 

References

  1. Formation and Effect of Residual Lithium Compounds on Li-Rich Cathode Material Li1.35[Ni0.35Mn0.65]O2, ACS Appl. Mater. Interfaces 2019, 11, 12, 11518–11526.

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