Technological Exploration


High specific energy technology

Energy density >

350 Wh/kg

High-nickel technology
High-nickel technology

High-nickel technology

High-nickel systems, with nickel content exceeding 88%, combined with optimized particle-size distribution technology, ensure excellent processability and enhance energy density at the material level.

Silicon-carbon technology
Silicon-carbon technology

Silicon-carbon technology

A novel silicon–carbon composite material achieves nanoscale, multiphase, uniform integration at the microscopic level, enhancing capacity while addressing the material’s kinetic limitations and severe volume expansion.

High-Power Technology

Ultra-fast charging >

3C

High-nickel technology
High-nickel technology

Ultra-thin Multidimensional Conductive Electrode Technology

The construction of a multidimensional conductive network increases electron transport pathways, enhances the conductivity response of the active material, and significantly accelerates lithium-ion insertion/extraction kinetics.

High-nickel technology
High-nickel technology

Ultra-low impedance

An ultra-low-viscosity, high-conductivity electrolyte formulation significantly reduces lithium-ion shuttling resistance in both the liquid phase and at the solid–liquid interface, enabling fast charging.

True Security Technology

Semi-solid-state battery

A brand-new high‑safety solution, featuring a highly safe cathode, electrolyte, and separator—along with other advanced safety‑oriented chemical components—significantly enhances the battery’s intrinsic safety, delivering truly safe batteries.

High-nickel technology

Solid-state electrolyte technology

By converting the liquid electrolyte into a solid electrolyte via electrochemical reactions, the pores of the electrode particles are thoroughly filled by the in-situ‑formed polymer upon solidification, thereby enhancing safety performance.

High-nickel technology

Nanocoating Membrane Technology

A nano‑solid electrolyte particle‑coated separator effectively reduces internal resistance and enhances safety.

Wide-temperature-range technology

High- and low-temperature resistant battery

Wide-temperature-range technology

By employing a single-crystal cathode with higher reactivity, paired with an anode featuring multidimensional lithium-ion transport pathways and a functional electrolyte boasting an ultra-low freezing point, the resistance to lithium-ion shuttling between the electrode materials and the electrolyte is reduced, thereby significantly enhancing the cell’s charge–discharge performance at low temperatures.

Wide-temperature-range application scenarios

Operating temperature range: -40°C to 70°C
-40°C capacity retention: ≥80%;
After 24 hours of storage at 80°C, the battery’s swelling rate is ≤3%, and its capacity retention is ≥95%.
Can be charged in a -20°C environment;
It is suitable for use in extreme environments such as high-altitude, cold mountainous regions.

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