Lithium Iron Phosphate LFP Cathode Material

$11,000.00

Lithium Iron Phosphate (LFP) Cathode Material is a high-performance battery material engineered for lithium-ion batteries, offering excellent thermal stability, long cycle life, and reliable energy performance. It is widely used in electric vehicles, energy storage systems, and industrial battery applications. Its strong safety profile, durability, and cost-efficiency make it a strategic choice for next-generation energy storage and electrification projects.

1. Product Overview

Lithium Iron Phosphate (LFP) Cathode Material is a high-performance lithium-ion battery cathode material engineered for applications requiring safety, long cycle life, thermal stability, and reliable energy storage performance. It is primarily used in lithium-ion batteries for electric vehicles, energy storage systems, industrial power applications, and portable energy solutions. LFP chemistry offers a strong balance of durability, safety, and cost efficiency, making it a strategically important material in the rapidly expanding global battery and energy-storage supply chain. Consistent quality and dependable bulk supply support manufacturers seeking scalable, long-term cathode material sourcing.

2. Key Specifications & Technical Characteristics

  • Material: Lithium Iron Phosphate (LiFePO₄ / LFP)
  • Chemical Composition: Lithium, iron, phosphorus, and oxygen
  • Grade: Battery-grade cathode active material
  • Purity: High-purity material suitable for lithium-ion battery manufacturing
  • Physical Form: Fine powder
  • Colour: Typically light grey to off-white
  • Particle Characteristics: Controlled fine particle size designed for battery electrode processing
  • Electrochemical Performance: High structural stability, long cycle life, and strong thermal performance
  • Thermal Stability: Excellent, supporting enhanced battery safety
  • Packaging Options: 20–25 kg bags, jumbo bags, or customized industrial packaging
  • Shelf Life: Typically 12 months when stored in sealed packaging under recommended dry conditions
  • Storage: Store in a cool, dry environment away from moisture and contamination
  • Documentation: Technical specifications, Certificate of Analysis (COA), Safety Data Sheet (SDS), and quality documentation available upon request

3. Core Industrial Applications

  • Electric Vehicles (EVs): Used in LFP battery cells and battery packs for electric cars, buses, commercial vehicles, and fleet applications.
  • Energy Storage Systems (ESS): Suitable for stationary battery storage supporting renewable energy integration, grid balancing, and backup power.
  • Industrial Batteries: Used in high-demand industrial power systems, material-handling equipment, and backup energy applications.
  • Telecommunications: Supports reliable battery systems for telecom infrastructure and remote power installations.
  • Portable & Distributed Energy: Used in rechargeable battery systems requiring long service life and enhanced safety.
  • Why LFP: Compared with nickel- and cobalt-based cathode chemistries, LFP provides strong thermal stability, excellent cycle durability, and reduced dependence on higher-cost critical metals, supporting competitive total cost of ownership.

4. Competitive Advantages

  • Quality Consistency: Controlled material characteristics designed to support stable electrode processing and dependable battery performance.
  • Supply Reliability: Structured bulk sourcing designed to support recurring industrial and manufacturing requirements.
  • Logistics Capability: Export-ready packaging and coordinated international logistics for commercial-scale shipments.
  • Price Competitiveness: Cost-efficient LFP chemistry provides an attractive sourcing proposition for high-volume battery production.
  • Safety & Sustainability: Cobalt- and nickel-free chemistry with strong thermal stability and suitability for long-life energy-storage applications.
  • Technical Documentation: COA, SDS, technical specifications, and relevant quality documentation can be provided to support procurement and quality-control processes.
  • Strategic Sourcing Value: A scalable cathode material solution for manufacturers seeking dependable quality, competitive economics, and long-term supply continuity.

5. Commercial & Supply Information

  • Minimum Order Quantity (MOQ): BULK – 20 MT
  • Loading Capacity: Approximately 20 MT per container, subject to packaging configuration, container specifications, and applicable shipping requirements
  • Packaging: Standard industrial bulk packaging or customized packaging according to buyer requirements
  • Supply: Suitable for recurring bulk procurement and long-term industrial supply programs
FOB Price

per MT

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