
Atomic level growth of phosphate liquid phase synthesis technology, in-situ doped nano (20-150nm) lithium iron (or manganese) phosphate cathode material, achieves good processing characteristics and low-temperature rate characteristics.
The electrolyte additive TAD01 and electrolyte formulation technology developed to balance high temperature characteristics with ultra-low temperature and rate performance can synthesize solid electrolyte materials with nanoscale and uniform particle size, achieving conductivity of 10-2S/cm and good processing characteristics.
We have stable OEM resources from top companies, and our manufacturing capabilities are stable and reliable.
Dalian Institute of Chemical Physics, Chinese Academy of Sciences and others have authorized or shared the technology of high-energy lithium sulfur battery, all solid state sample technology and new battery technology.
The team has a unique understanding of chemical system combinations, electrode design, and manufacturing limits, especially in the design of power innovations.
High nickel, high silicon ternary high safety
New lithium iron phosphate ultimate performance system
Development of Next Generation New Chemical Systems
Application technology of recycled materials
ED breakthrough>400Wh/kg high-end product
LT -50 ℃, FC/FD>4C extreme environment products
Large soft pack, standard square battery cells with flexible size changes for easy assembly size requirements
The demand for lithium-ion batteries in special environments
Good product performance and production quality assurance
Large soft pack comparable to consumer battery performance
Energy storage and power battery blank areas, small market demand for battery cell products
Product demand for special application areas in small markets
Drones, vehicle charging power supplies, mining cards, low-temperature charging vehicles, solar street lights, communication base station power supplies, medical equipment power supplies, robot power supplies and other fields

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