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Customized Lithium Ion Battery Cathode And Anode Electrodes LFP/LMO/NMC/LTO/Graphite Electrodes


Contact Person:Louis Yang

Email: Louis@chinabatterymachine.com

Tel:+86 13003860308
Whatsapp: +86 13003860308
Wechat:18659217588

  • Item No.:

    LITH-Electrode
  • Payment:

    Credit Card, Paypal, T/T , Western Union, LC
  • Lead Time:

    5 days

New Products

  • Product Details

Customized Lithium Ion Battery Cathode And Anode Electrodes LFP/LMO/NMC/LTO/Graphite Electrodes



Ⅰ、Introduction:

LITH could supply different kinds of lithium ion battery electrodes, including Aluminum foil coating LFP, LMO, LCO, NMC, copper foil coating graphite. Also can customize the cathode and anode electrodes as your demands.

Ⅱ、Product Parameters:

Material systems

LCO

NCM

LMO

LFP

Graphite

 

Formulation

Specific Capacity @ C/10 (mAh/g)

% wt

Cathode Active Material

190

96

PVDF

0

2

Al foil thickness

12

µm

Coating width

235

mm

Pattern coating length

517

mm

Uncoated length 

20

mm

Density

3.56

g/cm3

Porosity

25

%

Mass loading

23.5

mg/cm²

Thickness

154 ± 1

µm

 

Formulation

Specific Capacity @ C/10 (mAh/g)

% wt

Anode Active Material

355

95.2

C45

0

1.5

Cu foil thickness

8

µm

Coating width

230

mm

Pattern coating length

520

mm

Uncoated length (uncoated foil gap between patterns)

20

mm

Density

1.73

g/cm3

Porosity

30

%

Mass loading

13.59

mm

Thickness

175±1

µm

 

、Material Features:


Characteristics of lithium iron phosphate

Characteristics of lithium cobalate

Characteristics of Ternary material

、Product Display:


、Production Machine:




、Package:








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Solid State Battery Laboratory Pilot Assembly Line Fabrication Machines Solid state batteries are a type of battery that uses solid electrodes and solid electrolytes, offering high safety and high energy density by weight and volume. They are expected to meet the increasingly demanding and often conflicting technical requirements in the development of power batteries, making them one of the important directions for the future of power battery development. Key Performance Attributes Performance Reason for Improvement Potential Application Advantages High Safety Utilizes inorganic non-flammable electrolyte with good thermal stability Simplifies system safety protection design, reduces constraints on battery system layout High Energy Density Capable of adopting bipolar plate structures, compatible with high-capacity anode and cathode materials such as lithium metal Enhances battery module energy density, potentially doubling it, and may reduce manufacturing costs High Power Characteristics Ion hopping transport mechanism of solid electrolytes, with high ionic conductivity and lithium-ion transference numbers Improves fast charging performance, matching the needs of electric vehicles Good Temperature Adaptability Operates within a wide temperature range of -30~100℃, with solid electrolytes that neither freeze nor vaporize Simplifies cooling mechanisms, broadening application scenarios for electric vehicles Wide Range of Material Selection Wide voltage window with good stability at high voltages Reduces interfacial side reactions, expanding the range of anode and cathode materials, and lowers raw material costs and resource scarcity risks   Technical process(just for reference)