Small pouch cells feature high capacity, high power, and ultra-slim design advantages, making them ideal for applications such as smartphones and drones.
The Slimmest
High energy density
Various Sizes
Zigzag Stacking
Advanced cross-stacking technology alternates cathode and anode sheets with separators, enhancing both precision and safety.
High-voltage Mid-Ni NCM Chemistry Core Technology
Single Particle Cathode
Low effective surface area and high structural stability reduce gas generation and extend cycle life at high-voltage.
Electrolyte for High-voltage
Lowering electrolyte oxidation and metal dissolution extends high-voltage cycle life while reducing gas.
Hybrid Conducting Agent
0-Dimensional Conducting Agent: Higher electrolyte absorption for ionic path. 1-Dimensional Conducting Agent : High-conductivity electrical path.
Key Advantages of Mid-Ni NCM Chemistry
High Energy Density
Improved Safety
Cost Competitiveness
Excellent Durability
High-voltage LCO
Cathode Development Status
LG Energy Solution’s high-voltage LCO cathode technology offers higher unit capacity and operating voltage, increasing energy capacity.
Surface Coating and Doping Process
Minimizes side reactions like cathode lattice distortion and surface reactions from high-voltage, by applying surface coatings and an increased amount of doping materials.
Zero Transition Zone (ZTZ)
Zero Transition Zone (ZTZ) technology prevents top swelling, ensuring stable energy capacity and longer battery life.
What is the ZTZ?
Anode sliding reduces the interfacial capacity between the cathode and anode, affecting energy capacity and charging speed, and leading to top swelling. The ZTZ process enhances the bonding interface between the cathode and anode facing areas and suppresses side reactions in the upper part of the battery by minimizing the anode sliding area through laser removal.
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