Yuling New Energy develops silicon-based anode materials, including SiOC and SiC, utilizing a low lithium consumption technology that enhances electronic conductivity and structural stability. This approach addresses the demand for high-capacity, long-cycle lithium battery components essential for electric vehicles and portable electronics.
Funding
Funding not disclosed
Founders
Product
Problem
The increasing demand for high-capacity, long-cycle lithium batteries, particularly for electric vehicles and portable electronics, requires advanced anode materials that enhance both energy density and structural integrity. Traditional anode materials often suffer from limited capacity and poor cycling stability, hindering the performance of next-generation batteries.
Solution
Yuling New Energy develops and manufactures silicon-based composite anode materials, including SiOC and SiC, designed to improve the performance of lithium-ion batteries. Their core technology focuses on a "low lithium consumption" approach that enhances electronic conductivity and structural stability through optimized morphology and carbon coating. This method provides a safer, easier-to-process, and more cost-effective alternative to pre-lithiation techniques, resulting in high initial efficiency and extended cycle life for battery applications. The company's product portfolio includes silicon oxide (SiOx), silicon-oxygen-carbon (SiOC), silicon carbide (SiC), and porous silicon-carbon composites, catering to diverse energy storage needs.
Target Audience
The primary customers are battery manufacturers and electric vehicle companies seeking high-performance anode materials to improve the energy density, cycle life, and safety of their lithium-ion batteries.
Features
- Silicon-oxygen-carbon (SiOC) materials utilizing a low lithium consumption technology for enhanced performance.
- Carbon coating to improve electronic conductivity and stabilize the chemical/electrochemical reaction interface.
- Silicon carbide (SiC) composites designed to increase capacity and improve electrochemical performance.
- Porous silicon-carbon composites suitable for lithium-ion and solid-state batteries.
- Capability to produce high-end artificial graphite anode materials.
- Materials applicable to 3C consumer electronics, medical devices, industrial equipment, and electric vehicle batteries.
- Manufacturing capacity of 30,000 tons per year for silicon-based composite anode materials (Phase 1).