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「PHY Positive Electrode Material」
From Great Materials to Great Batteries-Powered by GCL

「PHY Positive Electrode Material」is the product brand of Sichuan GCL Lithium Battery Technology Co., Ltd. GCL Lithium Battery is affiliated to GCL Group and was established in 2022. It focuses on the research and development and manufacturing of new energy lithium battery energy storage materials and related lithium battery materials, and holds multiple invention patents for lithium iron phosphate and lithium manganese phosphate materials.

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150000 +

Annual production of 150000 tons of lithium iron phosphate cathode material

350 +

The project land is 350 acres

40 +

40+ invention patents

  • C3
  • C7
  • C10
  • C16
  • C10L
  • C18
C3 High-efficiency Lithium Iron Phosphate
95 %

Energy efficiency reaches 95%

C7 3rd Generation High-Compaction Lithium Iron Phosphate
2.55 g/cm³

Powder compaction 2.55 g/cm³

C10 4th Generation High-Compaction power Lithium Iron Phosphate
1C144 mAh/g

Optimized for both capacity and power
1C144mAh/g, 3.2Vplatform 92%

C16 4.5th Generation High-Compaction Lithium Iron Phosphate
1C142 mAh/g

High capacity
1C142 mAh/g

C10L 4th Generation High-Compaction LFP for Energy Storage
2.58 g/cm³

Powder compacted density: 2.58 g/cm³
1P discharge specific capacity: 138 mAh/g

C18 Fifth-Generation High-Compaction Lithium Iron Phosphate
1C142.3 mAh/g

High capacity, 1C discharge: 142.3 mAh/g
Plateau capacity ratio (1C, 3.2 V): 94.4%

Main Products
Multiple types of products for matching

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Process Advantages

Product performance jumps

Product performance jumps

Beyond traditional craftsmanship

The indicators of the cathode material produced by the GCL-PHY process, including compactness, energy density, and cycle times, surpass traditional processes in all aspects

Exquisite craftsmanship process

Exquisite craftsmanship process

Simplified process, optimized equipment, reduced sand milling and sintering equipment

Low cost

Low cost

Cost significantly reduced by 46%

Completely changing the raw materials, the cost is significantly reduced by 46% compared with the traditional iron phosphate process

Low energy consumption

Low energy consumption

Energy consumption reduced by 42%

Energy consumption is reduced by 42%. The production process does not involve chemicals, is pollution-free, and does not produce process wastewater, waste residue, or waste gas. It can be rapidly scaled up.