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Lithium-Rich Manganese-Based Layered Oxide Cathode Materials for Batteries

Item No.: Lithium-rich Manganese-based Layered Oxide Battery Cathode Materials
Application: The lithium-rich manganese-based material is a solid solution cathode material, which can exert a specific capacity of 250mAh/g or more at 2~4.8V, and has
Order(MOQ): 1 set;
Payment: T/T, Western Union, Paypal, L/C;
Product Origin: China;
Lead Time: 15days;
Note: XIAOWEI factory supports OEM.

 Products Description 

The lithium-rich manganese-based material is a solid solution cathode material, which can exert a specific capacity of 250mAh/g or more at 2~4.8V, and has good cycle performance.

 Technical Parameters

Package 20g /100g /500g/1000g
Model :XW- Li-rich
Specification :
D10(um)4.9
D50(um)9.4
D90(um)16.8
BET(m2/g)0.7
Tap density(g/cm3)2
Gram capacity(mAh/g)200
Voltage(V)3.0~4.6
Gram capacity coin cell test conditions25℃,0.1C, 3.0~4.6v
PH10.86
Component detectionFe~0.0032%
Cu ~0.0000%
Mg~0.0129%
Ga~0.0099%
Moisture~0.0335%
Research application:
Pouch cell, coin cell battery research.
Advantages:
1: The lithium-rich manganese-based material is a solid solution cathode material, which can exert a specific capacity of
250mAh/g or more at 2~4.8V, and has good cycle performance.
2:Excellent processing performance, commercial mass production products, good quality and stable quality
3:Widely used in power tools, tablet PC, electronic toys, electric cars and energy storage products
4: Convenient for pouch cell and coin cell battery research
5:The material is mainly made of relatively cheap manganese elements with less precious metal content with lower cost and
higher safety.
Rate test:at temperature 25℃, constant current charge to 4.8V, then constant voltage charge until the current is less than 0.02C, after that constant current discharge to 3.0V at a rate of 0.1C/0.2C/0.5C/1C/2C/3C
Cycle test:at temperature 25℃, first 0.5C constant current charge to 4.8V, then constant voltage charge until the current is less than 0.02C, then 1C constant current discharge to 3.0V

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