SHANGTAITECH

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    Building a World-Class Lithium Anode Materials Enterprise
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    R & D, Sales and Integrated Production of Emerging
    Lithium-Ion Battery Anode Materials Enterprise
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    Green Purchasing
    Green Manufacturing
    Green Output

Lithium-Ion Battery

Lithium-ion battery is an efficient and rechargeable secondary battery, which is charged and discharged by the movement of lithium ions between the positive and negative electrodes. The Cathode Material is usually lithium metal oxide, and the Anode Material is graphite or silicon-based material, which has the characteristics of high energy density, long cycle life and low self-discharge rate, and is widely used in mobile phones, laptops and electric vehicles.

Product Solutions

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High Energy Density

High specific energy anode materials have high specific capacity and high compaction density, which can significantly improve the mass energy density of lithium-ion batteries, reduce the volume of batteries and improve their portability. Application mainly include computers, communication equipment and consumer electronics products.

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High C-rate

High C-rate anode materials have the characteristics of strong fast charging capability and high discharge power, can significantly shorten the charging time of the lithium ion battery, provide larger output power in a short time, and improve the timeliness of the lithium ion battery. The application mainly include power battery fields such as electric vehicle, electric ships and electric aircraft.

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Long Cycle

Long-cycle anode materials have the characteristics of long cycle life, high energy efficiency and high temperature resistance, can greatly improve the service life of the lithium ion battery, adapt to various working conditions and has full scene. Application mainly include industrial and commercial energy storage, distributed energy storage and household energy storage products.

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High Security

Lithium-ion battery thermal runaway is closely linked to the solid electrode interface (SEI) on the graphite anode. By understanding the microstructure and composition from the atomic to the electrode level, we can improve the SEI dynamic evolution during cycling, including formation, dissolution, detachment, oxidation, and decomposition, enhancing the battery's inherent safety.

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Intelligent Manufactory

  • Raw material pretreatment

  • Prilling workshop

  • Pre-graphitization workshop

  • Graphitization workshop

  • Carbonization workshop

  • Finished product processing

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    Raw material pretreatment

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    Prilling workshop

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    Pre-graphitization workshop

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    Graphitization workshop

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    Carbonization workshop

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    Finished product processing

Cathode Material

LFP, LFMP, NMC, LCO ...

Separator

PP, PE, multilayer composite separator, etc.