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Battery Grade Graphite with Excellent Thermal Conductivity

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Battery Manufacturing: High-purity artificial graphite optimized for lithium-ion batteries, ensuring stable performance and prolonged cycle life.
  • Thermal Management: Superior thermal conductivity enhances heat dissipation in high-demand applications, improving battery safety and efficiency.

Key features

  • 1. Material Technology

  • With high-purity carbon content (~99.9%), ensure consistent performance in high-demand battery applications.

  • 2. Performance Parameters

  • With excellent thermal conductivity (up to 200 W/m·K), ensure efficient heat dissipation in high-power batteries.

  • 3. Scenario Solutions

  • Tailored for lithium-ion batteries, support prolonged cycle life in electric vehicles and portable electronics.

  • 4. Certification Standards

  • Comply with EPR regulations in France and Germany, facilitate sustainable packaging solutions for eco-conscious manufacturers.

  • 5. Interactive Design

  • With optimized granular texture, enhance compatibility with electrode manufacturing processes.

Product details

Battery Grade Graphite with Excellent Thermal Conductivity

Battery Grade Graphite with Excellent Thermal Conductivity is a high-purity artificial graphite material designed for advanced battery applications. Its fine granular structure and black powder form ensure optimal performance in energy storage systems, while certifications like EPR_France_Packing and EPR_Germany_Packing guarantee compliance with European environmental standards.

Technical specifications

FeatureSpecificationBenefit
MaterialArtificial graphite powder/granulesConsistent particle size for uniform performance
Carbon ContentHigh-purity (>99.9%)Minimizes impurities for reliable battery performance
Thermal Conductivity180-220 W/m·KEfficient heat dissipation in high-power batteries
CertificationsEPR_France_Packing, EPR_Germany_PackingMeets EU environmental packaging regulations
ApplicationLithium-ion batteries, EV batteriesOptimized for high-energy-density systems

Customization guide

Adjust particle size distribution (2-10 µm) or purity levels to meet specific battery design requirements, such as enhanced energy density or faster charging cycles.

Get inspired

With its exceptional thermal conductivity and high-purity carbon content, this graphite is ideal for next-gen batteries. Whether you’re designing electric vehicles or portable electronics, this material ensures stable performance under extreme conditions.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Purity99.5%+0.3% (99.8%)+0.5% (99.9%)
Thermal Conductivity180 W/m·K+20% (216 W/m·K)+30% (234 W/m·K)*
Particle Size Range5-15 µm2-10 µmCustomizable

Supplier's note

  1. Technical Breakthroughs:

    • High-Purity Carbon: Reduces impurities by 50% compared to standard graphite, enhancing battery lifespan.
    • Thermal Conductivity: The Pro Model’s 234 W/m·K is 20% higher than industry benchmarks, enabling safer high-power discharges.
    • EPR Compliance: Dual certifications simplify EU market entry for sustainable packaging requirements.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard consumer electronics (e.g., smartphones) where cost-efficiency is prioritized.
    • Advanced Model: Ideal for EV batteries requiring faster charging (e.g., 800V systems) thanks to its narrower particle size range.
    • Pro Model: Best for high-performance applications like industrial storage or aerospace, leveraging triple the chemical stability of competitors.

With the Pro Model’s thermal conductivity, you can safely handle 20% higher current loads in EV batteries. Pair this with its ultra-pure carbon to minimize thermal runaway risks, ensuring longevity in extreme environments.

Frequently asked questions

  • Which battery types is Battery Grade Graphite with Excellent Thermal Conductivity suitable for?

  • How does high-purity artificial graphite improve battery efficiency compared to natural graphite?

  • What certifications ensure this graphite meets European environmental standards?

  • Can Battery Grade Graphite be customized for specialized battery applications?

  • Why is thermal conductivity critical in battery-grade graphite?

  • What safety precautions are required when handling this graphite powder?

  • Is this graphite compatible with next-gen solid-state batteries?

  • How does this graphite reduce battery swelling or degradation?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Carbon PurityBattery anode productionIndustry Standard: 99.9% (ISO 13885)
Our Base: 99.95% (▲▲)
Our Advanced: 99.99% (▲▲▲)
Minimizes impurities for longer battery lifespan.
Meets strict EV battery specs.
Higher purity increases production costs.
Thermal ConductivityHigh-power EV batteriesIndustry Standard: 180 W/m·K (ASTM C1114)
Our Base: 220 W/m·K (▲▲)
Our Advanced: 250 W/m·K (▲▲▲)
Enhances heat dissipation, reducing thermal runaway risk.
(Equivalent to copper’s conductivity at 250 W/m·K)
Advanced variants may require specialized handling to avoid brittleness.
Graphite TypeLithium-ion battery anodesIndustry Standard: Natural graphite (variable structure)
Our Base/Advanced: Artificial graphite (uniform ASTM C775 structure)
Consistent microstructure ensures stable charge/discharge cycles.
(▲▲▲ vs natural graphite)
Artificial production requires higher energy input.
Environmental ComplianceEU-regulated markets (France/Germany)Industry Standard: No EPR compliance
Our Base/Advanced: EPR-France/Germany certified (▲▲▲)
Avoids legal penalties and meets eco-packaging mandates.Certification adds 5-8% to upfront costs.
Particle Size UniformityBattery slurry mixingIndustry Standard: 10-50 µm (broad range)
Our Base: 10-30 µm (▲▲)
Our Advanced: 5-20 µm (▲▲▲)
Reduces defects in electrode coating; improves energy density.
(▲▲▲: 30% narrower range than standard)
Narrower particles may clog precision machinery.
Application VersatilityCustom battery chemistriesIndustry Standard: General-purpose graphite
Our Base: Optimized for Li-ion (ASTM D3951)
Our Advanced: Tailored for solid-state batteries (▲▲▲)
Enables compatibility with next-gen battery tech.
(▲▲▲: Passes JEVS-002 solid-state interface tests)
Advanced variants require R&D partnerships for integration.

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