ossila锂锰氧化物粉末

ossila锂锰氧化物粉末

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Lithium manganese oxide (LMO, CAS number 12057-17-9) has a chemical formula of LiMn2O4 is also referred to as lithium manganate. It is a promising candidate to replace layered Ni or Co oxide materials as the cathode in lithium-ion batteries. Known for its intrinsic low-cost, environmental friendliness, high abundance, and better safety, lithium manganese oxide can improve ion transport and power capability especially at high rates. It also has a higher nominal voltage (4.0 V) than the benchmark cathode material LiCoO2.


Like LiCoO2, LiMn2O4 suffers from capacity fading caused by a combination of structural transformation and transition metal cation dissolution. The so called Jahn–Teller distortion, occurred at the discharge state of Mn3+, causes a symmetry distortion of the octahedra complex and transforms the spinel into a tetragonal with large anisotropic volume change. The structure distortion is peaked at high current rate when Li diffusion rate into the electrolyte is greater than inside the domain of the crystal structure.+

Technical Data
CAS Number 12057-17-9
Chemical Formula LiMn2O4
Molecular Weight 180.81 g/mol
Chemical Name Lithium Manganese Oxide
Synonyms Lithium manganese oxide spinel powder
Classification / Family 2D semiconducting materials, Battery materials, Metal oxides, Cathode materials
Colour Black to grey powder
Melting Point 400 °C
Product Detail
Product Code M2402A1 M2402A2
Average Particle Size (APS) D50: 23 – 27 μm D50: 14.8 μm
Specific Surface Area (SSA) 0.4 – 1.0 m2/g 0.68 m2/g
Coin Cell Capacity 0.1 C ~105 mAh/g 115.9 mAh/g
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Crystal Structure
Lithium manganese oxide has a spinel crystal structure with space group of Fd3m. Closely packed oxygen array allocates cations in octahedral and tetrahedral sites. The same amount of Mn3+ and Mn4+ occupies the octahedral sites while lithium occupies the tetrahedral sites.

lithium manganese oxide crystal structure

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