Cathode Materials Cathode Materials

Cathode Materials

Cathode materials are the technological foundation and strategic core of ZOOLNASM. The company's proprietary NFS cathode material system establishes the fundamental advantages of high safety, long cycle life, and low cost in its products, which lies at the heart of the sodium-ion battery industry's vision for the future and continuously drives the company's overall product strategy and commercialization efforts.
NFS Cathode Material

Based on nearly five years of technological development, ZOOLNASM has successfully transformed bulk industrial by-products—sodium sulfate and ferrous sulfate—into high-performance cathode materials. Through all-solid-state premixing and low-temperature sintering processes, the energy consumption of key production steps has been reduced by approximately 30% compared to LFP, while achieving green manufacturing with nearly 100% raw material utilization and genuinely zero waste emission.

The system’s outstanding green and low-carbon performance has been recognized by authoritative institutions. It has received the First Prize at the 2024 BRICS Industrial Innovation Competition and the Outstanding Technological Achievement Award in New Energy Battery Recycling, further validating its technological advancement and industrial value.

NFS Cathode Material
Core Advantages
Raw Material Availability
Raw Material Availability
Raw materials are industrial by-products from the chemical sector, featuring an iron-based composition free of precious metals, ensuring low cost and high accessibility
Raw materials are industrial by-products from the chemical sector, featuring an iron-based composition free of precious metals, ensuring low cost and high accessibility
Streamlined Production Process
Streamlined Production Process
A unique preparation method requiring only a single sintering step
A unique preparation method requiring only a single sintering step
Low Energy Consumption
Low Energy Consumption
Full solid-state low-temperature synthesis, with sintering temperature below 400°C
Full solid-state low-temperature synthesis, with sintering temperature below 400°C
Green & Safe Manufacturing
Green & Safe Manufacturing
100% raw material utilization
with no emissions or solid
waste
100% raw material utilization with no emissions or solid waste
Product
0.1C CC./mAh/g(2.0-4.5V)
0.1C DC./mAh/g(2.0-4.5V)
5C CC.(mAh/g)
D10/um
D50/um
D90/um
Application Scenarios
Basic Model<br>NFS 2B0
Basic Model
NFS 2B0
≥90
≥88
≥72
≥0.6
2.0-2.7
≤11
Low-Speed Power
Advanced Model<br> NFS 3B0
Advanced Model
NFS 3B0
≥95
≥92
≥77
≥0.6
1.5-2.5
≤10
Low-Speed Power
High-Cycle Model<br> NFS 3C0
High-Cycle Model
NFS 3C0
≥92
≥90
≥75
≥0.6
1.5-2.5
≤10
Energy Storage
0.1C CC./mAh/g(2.0-4.5V)
≥90
0.1C DC./mAh/g(2.0-4.5V)
≥88
5C CC.(mAh/g)
≥72
D10/um
≥0.6
D50/um
2.0-2.7
D90/um
≤11
Application Scenarios
Low-Speed Power
0.1C CC./mAh/g(2.0-4.5V)
≥95
0.1C DC./mAh/g(2.0-4.5V)
≥92
5C CC.(mAh/g)
≥77
D10/um
≥0.6
D50/um
1.5-2.5
D90/um
≤10
Application Scenarios
Low-Speed Power
0.1C CC./mAh/g(2.0-4.5V)
≥92
0.1C DC./mAh/g(2.0-4.5V)
≥90
5C CC.(mAh/g)
≥75
D10/um
≥0.6
D50/um
1.5-2.5
D90/um
≤10
Application Scenarios
Energy Storage
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