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Wide Operating Temperature Range Graphite Fluoride for Renewable Energy Storage for Lithium Ion Batteries Pack

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Performance Electrode Material: Graphite fluoride granules enhance energy density and thermal stability in lithium-ion battery packs, optimizing performance for renewable energy storage systems.
  • Wide Operating Temperature Range: Designed to maintain efficiency across extreme temperatures (-30°C to 60°C), ensuring reliability in diverse environmental conditions.

Key features

  • 1. Material Technology

  • With corrosion-resistant graphite fluoride composition, ensure stable performance across a wide operating temperature range (-30°C to 60°C). This advanced material maintains structural integrity in extreme environments, outperforming conventional graphite anodes by 30% in thermal stability.*

  • 2. Performance Parameters

  • With enhanced energy density, deliver up to 20% higher capacity than conventional lithium-ion battery materials.* This enables prolonged runtime and optimal energy storage for renewable systems like solar setups or electric vehicles.

  • 3. Certification Standards

  • With EPR France and EPR Germany certifications, ensure compliance with stringent European environmental regulations for packaging and disposal. This eco-conscious design supports sustainable manufacturing and waste management practices.

  • 4. Scenario Solutions

  • Designed for renewable energy storage systems, this material enables seamless integration into home solar setups and commercial grid applications, providing reliable power delivery in both residential and industrial settings.

  • 5. Interactive Design (Customization)

  • With customizable particle size and purity levels, tailor the material to specific battery chemistries and application requirements. This flexibility ensures optimal performance for diverse use cases, from high-power EV batteries to low-temperature storage systems.

Product details

Wide Operating Temperature Range Graphite Fluoride for Renewable Energy Storage for Lithium Ion Batteries Pack

The Wide Operating Temperature Range Graphite Fluoride is a high-performance material engineered for lithium-ion battery packs in renewable energy storage systems. This carbon-based compound offers exceptional thermal stability (-40°C to 80°C), ensuring reliable performance across extreme environments. Certified for compliance with EPR standards in France and Germany, as well as CE safety norms, it is ideal for applications demanding durability and regulatory adherence.

Technical specifications

FeatureSpecificationBenefit
MaterialGraphite FluorideEnhanced conductivity and thermal stability
Operating Temp.-40°C to 80°CReliable performance in harsh climates
CertificationsEPR_France_Packing, EPR_Germany_Packing, CEMeets EU environmental and safety standards
Particle Size10-50 μm (customizable)Optimized for efficient packing density
Purity≥99.5%Minimizes impurities for consistent quality
ApplicationRenewable energy storage, EV batteriesSupports high-energy-density battery systems

Customization guide

Adjustable parameters include particle size (for tailored conductivity), purity levels (to meet specific chemical requirements), and surface treatment (to enhance adsorption or reactivity). For instance, finer particles improve energy density in compact battery designs.

Get inspired

With its wide temperature range, this graphite fluoride enables lithium-ion batteries to operate efficiently in electric vehicles (EVs) or grid storage systems exposed to extreme weather. Its compatibility with EPR regulations simplifies compliance for European markets.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature Range-30°C to 70°C+20% (-40°C to 75°C)+30% (-40°C to 80°C)*
Energy Density250 Wh/kg280 Wh/kg310 Wh/kg
Cycle Life800 cycles1,200 cycles1,500 cycles
Conductivity10 S/cm12 S/cm15 S/cm

Supplier's note

  1. Three Technical Breakthroughs:

    • Extended Temperature Range: The Pro Model’s -40°C to 80°C capability outperforms industry benchmarks by 20%, enabling use in Arctic or tropical climates.
    • Enhanced Conductivity: Advanced Model’s 12 S/cm conductivity (20% higher than base) reduces internal resistance, improving charge efficiency.
    • EPR Compliance: Pre-certification streamlines deployment in EU markets, reducing regulatory hurdles.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard consumer electronics or mild climate applications.
    • Advanced Model: Ideal for EVs and industrial batteries requiring moderate durability and cost efficiency.
    • Pro Model: Best for extreme environments (e.g., aerospace, Arctic grid storage) where peak performance and longevity are critical. With its triple-certification, it ensures seamless integration into regulated supply chains.

Frequently asked questions

  • Which lithium ion battery anode material suits extreme temperatures for renewable energy systems?

  • How does graphite fluoride compare to traditional graphite in lithium ion batteries?

  • Does this battery pack meet EPR compliance for European markets?

  • Can the graphite fluoride anode be customized for specific battery applications?

  • What certifications ensure the safety of this lithium ion battery pack?

  • How to maintain lithium ion batteries using graphite fluoride anodes?

  • Is this battery suitable for solar energy storage systems?

  • What advantages does graphite fluoride offer for grid-scale energy storage?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Graphite Fluoride (Our Advanced)Renewable energy storage, EVs in extreme climatesOperating Temp: -40°C to 60°C (IEC 60068-2-1) ▲▲
Energy Density: 300 Wh/kg (ISO 12405-2)
EPR France/Germany, CE certified
▲▲ Wider temp range (vs Base: -20°C to 60°C)
High energy density
Eco-friendly packaging
Higher cost than traditional graphite
Traditional Graphite (Industry Standard)Consumer electronics, moderate climatesOperating Temp: 0°C to 50°C (IEC 60068-2-1)
Energy Density: 200 Wh/kg (ISO 12405-2)
Cost-effective
Widely adopted
Limited temp range
Lower energy density
Lithium Iron Phosphate (LiFePO₄)Solar storage, backup power systemsCycle Life: 3,000+ cycles (IEC 61433)
Energy Density: 120–160 Wh/kg (ISO 12405-2)
Long lifespan
High safety (non-flammable)
Lower energy density
Heavier than NMC/NCA
Nickel Cobalt Aluminum (NCA)High-performance EVs, aerospaceEnergy Density: 250–280 Wh/kg (ISO 12405-2)
High power output
High energy/power ratio
Lightweight
Thermal instability
Higher cost
Lead-Acid BatteriesUPS systems, automotive starting batteriesEnergy Density: 30–50 Wh/kg (IEC 60095)
Affordable upfront cost
Inexpensive
Reliable for short-term power
Heavy
Short lifespan (500 cycles)
Environmental concerns
Solid-State Batteries (Emerging Tech)Future EVs, high-end tech (not yet mainstream)Energy Density: 400+ Wh/kg (projected)
No flammable electrolyte
▲▲ Potential for ultra-high energy density
Enhanced safety
Expensive
Not commercially viable yet

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