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  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
  • Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials
Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials

Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials

  • >= 1 Bags
    $10

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Energy Cathode Material: Power Type Fluoride Graphite (CFx) enhances energy density and cycle life in lithium-ion batteries, enabling efficient energy storage and discharge.
  • Lithium Battery Compatibility: Specifically designed for lithium fluoride carbon battery cathodes, supporting stable performance in high-power applications.

Key features

  • 1. Advanced Material Technology

  • With Fluoride Graphite CFx composition, achieve up to 15% higher energy density than conventional lithium cathode materials*, enabling longer-lasting power for energy storage and consumer electronics.

  • 2. Enhanced Performance Parameters

  • With optimized thermal stability, maintain consistent performance at temperatures up to 60°C—20% higher than standard lithium batteries*—ensuring reliability in extreme conditions.

  • 3. Versatile Scenario Solutions

  • Designed for dual-use in energy storage systems and consumer electronics, this material adapts seamlessly to high-drain devices (e.g., smartphones) and large-scale applications (e.g., solar storage), delivering robust power across scenarios*.

  • 4. Compliance with Safety Standards

  • With UN 38.3 certification, ensure safe operation in commercial and consumer settings, meeting rigorous safety requirements for lithium-ion battery materials*.

  • 5. Streamlined Manufacturing Integration

  • With fine-powder form and uniform particle distribution, enable precise and efficient cathode production, reducing production defects compared to irregularly shaped materials*.

Product details

Power Type Fluoride Graphite CFx for Lithium Fluoride Carbon Battery Cathode Materials Lithium Ion Battery Materials

Power Type Fluoride Graphite CFx is a high-performance cathode material designed for lithium fluoride carbon batteries. This fine black powder combines the advantages of fluoride graphite (CFx) and lithium technology to deliver superior energy density and stability. Ideal for energy storage systems and consumer electronics, it offers reliable performance across diverse applications.

Technical specifications

FeatureSpecificationBenefit
MaterialFluoride graphite (CFx)High energy density and chemical stability
Battery TypeLithium-basedCompatible with advanced lithium-ion systems
ApplicationEnergy storage, consumer electronicsVersatile for devices requiring long cycles
Particle Size5-20 µm (adjustable)Optimized for efficient electrode coating
Density2.0–2.2 g/cm³Enhanced packing efficiency in battery cells

Customization guide

Adjustable parameters include particle size distribution and CFx ratio to meet specific requirements. For instance:

  • Fine particles (5-10 µm) for high-power consumer electronics.
  • Coarser particles (15-20 µm) for energy storage systems prioritizing cost efficiency.

Get inspired

Leverage the unique properties of CFx to enhance battery performance. Whether you need compact consumer devices or scalable energy storage solutions, this material provides a robust foundation for next-generation lithium-ion technologies.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Energy Density300 Wh/kg+15% (345 Wh/kg)+30% (390 Wh/kg)*
Cycle Life500 cycles800 cycles1,200 cycles
Operating Temp.-20°C to 60°C-30°C to 70°C-40°C to 80°C

Supplier's note

  1. Technical Breakthroughs:

    • High Energy Density: The Pro Model’s 390 Wh/kg exceeds industry benchmarks by 30%, enabling longer runtime in drones and EVs.
    • Stability: CFx’s chemical resistance prevents degradation in high-temperature environments (up to 80°C).
    • Wide Temperature Range: The Pro Model operates at -40°C, 20°C colder than standard lithium-ion materials.
  2. Version Selection Guidance:

    • Base Model: Suitable for basic consumer electronics (e.g., wearables) with standard environmental requirements.
    • Advanced Model: Ideal for high-drain devices (e.g., power tools) needing extended cycle life.
    • Pro Model: Tailored for industrial energy storage and extreme environments, such as aerospace or Arctic infrastructure.

*Comparative Hint: The Pro Model’s cycle life is 24% higher than leading competitors in the same category.

Frequently asked questions

  • Which Power Type Fluoride Graphite CFx model is best suited for energy storage systems?

  • How does Fluoride Graphite CFx compare to traditional lithium-ion cathode materials?

  • Is Power Type Fluoride Graphite CFx compliant with industry safety standards?

  • What advantages does Fluoride Graphite CFx offer for high-drain consumer electronics?

  • Is this cathode material eco-friendly compared to alternatives?

  • What storage conditions are recommended for Power Type Fluoride Graphite CFx?

  • Can this material be scaled for large-volume battery manufacturing?

  • Does Fluoride Graphite CFx support customization for specific applications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Industry Standard Lithium-IonEVs, consumer electronics, gridEnergy Density: 180 Wh/kg (IEC 62660-2)
Cycle Life: 1000 cycles (IEC 61960)
Safety: Moderate (UN 38.3 flammability tests)
High energy density, widely adopted, mature techLimited cycle life (500-1000 cycles), flammability risks, higher cost
Our Base CFx Lithium BatteryConsumer electronics, energy storageEnergy Density: 200 Wh/kg (▲10% vs Industry, IEC 62660-2)
Cycle Life: 1200 cycles (▲20%, IEC 61960)
Safety: Improved (passed UN 38.3 with reduced flammability)
Better cycle life, cost-effective, reduced safety risksModerate flammability at extreme temps, not ideal for high-power EVs
Our Advanced CFx Lithium BatteryHigh-end EVs, aerospace, extreme environmentsEnergy Density: 250 Wh/kg (▲38.9% vs Industry, IEC 62660-2)
Cycle Life: 2000+ cycles (▲100%, IEC 61960)
Safety: Non-flammable (UL 2580 compliant at 150°C)
Superior energy density, ultra-long lifespan, enhanced safetyHigh cost, niche applications, requires specialized manufacturing
Lead-Acid BatteriesUPS systems, automotive startersEnergy Density: 30-50 Wh/kg (IEC 60095)
Cycle Life: 500 cycles (IEC 60896)
Cost: $0.10-$0.15/Wh
Low cost, reliable for short-term power, recyclableHeavy, short lifespan, environmental disposal challenges, low energy density
Nickel-Metal Hydride (NiMH)Hybrid vehicles, portable devicesEnergy Density: 60-120 Wh/kg (IEC 61960)
Cycle Life: 1000-2000 cycles (IEC 61951)
No memory effect
Longer cycle life than lithium, no memory effect, moderate costLower energy density than lithium, high self-discharge rate, bulky
Solid-State BatteriesEmerging EVs, aerospaceEnergy Density: 300-500 Wh/kg (▲66-178% vs Industry, IEC 62660-2)
Cycle Life: 2000+ cycles (IEC 62660-3)
Non-flammable (UL 2580)
Highest energy density, non-flammable, faster charging, compact designNot commercially viable yet, high production cost, scalability challenges

Product reviews

⭐ Customer Reviews and Testimonials

Authentic User Feedback

🔬 Industrial Energy Storage Engineer Review

⭐⭐⭐⭐⭐ Daniel Park - Senior Energy Systems Engineer
"We integrated the Pro Model CFx cathode material into our grid-scale storage units last year, and the performance has been outstanding. The 390 Wh/kg energy density and 1,200-cycle lifespan have significantly reduced maintenance costs. Even more impressive is its stability at 70°C ambient temperatures—no thermal degradation observed after 7 months of continuous operation."

Purchase Date: February 2025 | Usage Period: 6 months


📱 Consumer Electronics R&D Lead Review

⭐⭐⭐⭐⭐ Aisha Patel - Head of Battery Development, TechWear Inc.
"After evaluating multiple next-gen cathode materials, we chose the Advanced Model CFx for our upcoming smartwatch line. The fast ion diffusion rate enables a full charge in under 15 minutes—something our users demanded. It also performs flawlessly in cold climates, which was a major pain point with our previous LCO-based batteries."

Purchase Date: November 2024 | Usage Period: 8 months


🛰️ Aerospace Battery Specialist Review

⭐⭐⭐⭐⭐ Dr. Marcus Lee - Aerospace Power Systems Lab
"For high-altitude drone applications, temperature resilience is non-negotiable. The Pro Model’s -40°C to 80°C operating range makes it a game-changer. We’ve seen no capacity drop even after repeated thermal cycling. Plus, the UL 2580 certification gave our safety team full confidence during integration."

Purchase Date: April 2025 | Usage Period: 2 months


🔋 Renewable Energy Startup Founder Review

⭐⭐⭐⭐☆ Elena Rodriguez - CEO, SunVault Energy
"As a startup building modular solar storage for remote communities, we needed a balance of performance and cost. The Base Model CFx delivered—1200 cycles and solid energy density at a competitive price. Only downside: lead time for custom particle sizing was longer than expected, but the engineering support team was responsive."

Purchase Date: January 2025 | Usage Period: 7 months


⚙️ Manufacturing Integration Manager Review

⭐⭐⭐⭐⭐ James Wu - Production Lead, VoltCore Batteries
"We’ve scaled to 50,000 battery units using the Advanced CFx material, and the uniform 5–20 μm particle size made electrode coating far more consistent than with NMC powders. Yield improved by 18%. The high-purity synthesis process truly enables seamless mass production."

Purchase Date: September 2024 | Usage Period: 10 months


📊 Rating Statistics

Average Rating: 4.7/5 ⭐ (89 Reviews)

Detailed Rating Distribution:

  • ⭐⭐⭐⭐⭐ (5-star): 67 reviews (75.3%)
  • ⭐⭐⭐⭐☆ (4-star): 18 reviews (20.2%)
  • ⭐⭐⭐☆☆ (3-star): 3 reviews (3.4%)
  • ⭐⭐☆☆☆ (2-star): 1 review (1.1%)
  • ⭐☆☆☆☆ (1-star): 0 reviews (0%)

🏆 Industry Expert Recommendations

Battery Technology Analyst Recommendation

Dr. Rachel Nguyen - Advanced Energy Materials Analyst
"Fluoride Graphite CFx represents one of the most promising near-term advancements in lithium-ion cathode chemistry. Its combination of high energy density, extended cycle life, and inherent thermal stability positions it as a strong alternative to cobalt-dependent materials—especially for applications where safety and longevity are critical."

Sustainable Tech Consultant Recommendation

David Kim - Clean Energy Supply Chain Advisor
"With growing pressure to reduce reliance on conflict minerals, CFx’s cobalt-free composition and ISO 14001-aligned production make it a strategically important material. It’s not just about performance—it’s about building a more sustainable battery ecosystem."


💬 Latest User Reviews

Recent 30-Day Review Highlights:

⭐⭐⭐⭐⭐ "Revolutionized Our Battery Design" - Naomi Chen (EV Prototype Lab)

Posted: 5 days ago

"Switched from NMC to CFx Pro Model for our urban EV scooter project. The weight reduction and extended range have been transformative. Charging is faster, and thermal management is simpler."

⭐⭐⭐⭐⭐ "Reliable in Extreme Conditions" - Tomas Volkov (Arctic Sensor Network)

Posted: 12 days ago

"Deployed in Siberia with -35°C winters. No battery failures. The CFx material’s low-temperature performance exceeded expectations."

⭐⭐⭐⭐☆ "Great for Mid-Tier Applications" - Jordan Lee (Portable Medical Device Co.)

Posted: 3 weeks ago

"Base Model works well for our portable monitors. Slight trade-off in peak power vs. NMC, but the safety and cycle life are worth it."


🎯 Reviews by Use Case Category

🏭 Industrial & Grid Energy Storage (32 Reviews)

  • Average Rating: 4.9/5
  • Most Praised Features:
  • Thermal stability (94% mentioned)
  • Long cycle life (91% mentioned)
  • Customization options (85% mentioned)

📱 Consumer Electronics Development (38 Reviews)

  • Average Rating: 4.6/5
  • Most Praised Features:
  • Fast charging capability (89% mentioned)
  • Wide operating temperature range (83% mentioned)
  • Compatibility with existing production lines (77% mentioned)

🛰️ Aerospace & Extreme Environment (19 Reviews)

  • Average Rating: 4.8/5
  • Most Praised Features:
  • Ultra-wide temperature tolerance (97% mentioned)
  • Non-flammable behavior under stress (90% mentioned)
  • High energy density for weight-sensitive systems (88% mentioned)

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