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LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder

    Buy cheap LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder from wholesalers
     
    Buy cheap LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder from wholesalers
    • Buy cheap LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder from wholesalers

    LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder

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    Brand Name : XWELL
    Model Number : P198-S20
    Payment Terms : ,T/T
    Delivery Time : 5-8 work days
    Price : 50-100000USD/Negotiable
    Supply Ability : 10000kg/mon
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    LiFePo4 LFP Lithium Iron Phosphate Cathode Material Battery Powder

    LiFePo4(LFP)​ Lithium Iron Phosphate Cathode Material Battery Powder

    P198-S20 is a high-performance lithium iron phosphate (LFP) material designed for use in lithium-ion batteries. This material offers several advantages, including enhanced ion conductivity, improved capacity utilization, and excellent thermal stability. It is particularly suitable for applications requiring high safety, long cycle life, and cost-effectiveness.


    Product Characteristics

    P198-S20 is characterized by its unique processing techniques that enhance the performance of the LFP material:

    1. Enhanced Ion Conductivity: Through special doping technology, the ion conductivity of the LFP material is significantly improved, enabling better capacity utilization. The specific capacity of the material at 1C discharge rate is ≥145 mAh/g, with a typical value of 145-147 mAh/g.
    2. Particle Blending Technology: By utilizing a combination of different particle sizes, the material achieves optimal packing density. The measured tap density of the wound electrode core is 2.45-2.55 g/cm³.
    3. Excellent Processability: Optimization of the carbon source reduces the amount of flocculent carbon between LFP particles, controlling the specific surface area to 11.0-12.0 m²/g. This improves the slurry preparation process.
    4. High-Temperature Performance: Special dense carbon layer coating and the selection of larger particles help to block side reactions with the electrolyte, improving high-temperature cycling performance.

    Physical and Chemical Specifications

    The physical and chemical properties of P198-S20 are detailed in the following table:

    Physical PropertyTest ItemUnitStandardTypical Value
    Particle Size Distribution (PSD)D10μm≥0.250.39
    Particle Size Distribution (PSD)D50μm1.0±0.51.08
    Particle Size Distribution (PSD)D90μm<104.24
    Carbon Content (C%)Carbon Content%1.50±0.21.48
    Specific Surface Area (BET)Specific Surface Aream²/g11.5±2.011.29
    Tap Density (TD)Tap Densityg/cm³0.8±0.20.66
    MoistureMoistureppm≤1000764
    Electrochemical0.1C Specific Capacity (2.5-3.7V)mAh/g≥154159.1
    Electrochemical0.1C Initial Efficiency (2.5-3.7V)%≥9597.82

    Battery Application

    P198-S20 is designed for various battery configurations, including 18650 cylindrical cells. The following tables provide detailed application parameters and performance data.

    Battery Design Scheme (18650EC)

    MaterialDesign Specific Capacity (mAh/g)Surface Density (g/m²)Compaction (g/cm³)Negative ExcessNominal Capacity (mAh)Electrolyte Volume (g)
    Positive (P198-S20)1453202.510%18006
    Negative (S360-L1)3501421.62---

    Slurry Preparation Scheme

    Positive Electrode

    Material TypeLFPSPPVDF (5130)Solid ContentViscosityFineness
    198-S2093.0%4.0%3.0%52.5%888010

    Negative Electrode

    Material TypeCSPSBR+CMCSolid ContentViscosityFineness
    360-L195.5%1.5%1.8%+1.2%45.0%284028

    Performance Data

    Specific Capacity and High-Temperature Storage

    Compaction (g/cm³)Initial Efficiency (%)1C Discharge Capacity (mAh)1C Specific Capacity (mAh/g)Internal Resistance (mΩ)
    2.589.81808145.428.4
    Initial Capacity (mAh)Stored Capacity After 7 Days (mAh)Capacity Retention RateRecovered Capacity (mAh)Capacity Recovery Rate
    ------------------------------------------------------------------------------------------------------------------------------------------
    1805173596.1%175897.4%

    Rate Performance

    Rate1C Capacity3C/1C5C/1C8C/1C
    mAh180698.5%98.0%80.1%

    Low-Temperature Performance

    Temperature25°C-20°C
    Capacity (mAh)1800841
    Ratio (%)100%46.7%

    Ambient Temperature Cycling Performance

    Cycle100200300400500
    Capacity Retention99.30%98.36%98.16%97.85%97.64%

    P198-S20 is an advanced LFP material that offers a balance of high performance, safety, and cost-effectiveness. Its unique processing techniques and optimized physical and chemical properties make it an ideal choice for various lithium-ion battery applications, including electric vehicles and energy storage systems.

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