Our Products
PCAM-NCM 333
The journey of CAM-NCM 333 begins with PCAM-NCM 333, a precursor blend of nickel, cobalt, and manganese in a balanced 3:3:3 ratio. This initial mix undergoes precise thermal and chemical treatments, setting the foundation for the final cathode active material. PCAM-NCM 333 plays a crucial role in defining the structure and properties of the battery, ensuring a stable and reliable performance in various applications.
CAM-NCM 333
CAM-NCM 333 serves as the positive electrode in lithium-ion batteries, crucial for their efficient operation. Its balanced composition offers an optimal mix of energy density, power output, and thermal stability. This makes it an ideal choice for applications that require a reliable balance of performance and cost-effectiveness, such as electric vehicles and energy storage systems. With manganese reducing costs and nickel enhancing energy density, CAM-NCM 333 provides a well-rounded solution for modern energy needs.
PCAM-NCM 532
PCAM-NCM 532 sets the stage for the high-energy cathode material CAM-NCM 532. This precursor comprises nickel, cobalt, and manganese in a 5:3:2 ratio, prepared for advanced processing. Through a series of controlled treatments, PCAM-NCM 532 is transformed, enhancing its structural integrity and electrochemical performance, and making it a robust foundation for high-performance batteries.
CAM-NCM 532
Designed for applications requiring high energy density, CAM-NCM 532 offers a superior capacity per unit weight, thanks to its higher nickel content. This chemistry is perfect for electric vehicles needing extended driving ranges and portable electronics requiring long operational times. The presence of manganese stabilizes the material, balancing the cost without compromising performance. CAM-NCM 532 stands out for its ability to deliver impressive energy density while maintaining thermal stability and cycle life.
PCAM-NCM 811
The precursor to CAM-NCM 811, PCAM-NCM 811, is a blend of nickel, cobalt, and manganese in an 8:1:1 ratio. This mix undergoes advanced processing techniques, including high-temperature treatments, to develop into a high-energy-density cathode material. The production of PCAM-NCM 811 focuses on enhancing electrochemical stability, setting the stage for next-generation battery applications.
CAM-NCM 811
CAM-NCM 811 is synonymous with high energy density, making it a top choice for next-gen lithium-ion batteries. With its high nickel content, this chemistry allows for lighter, more compact battery designs that don’t compromise on power or cycle life. Ideal for electric vehicles aiming for longer ranges and fast-charging capabilities, CAM-NCM 811 also reduces dependency on cobalt, addressing supply chain concerns and lowering costs. This makes it a pivotal material in the push towards more efficient and sustainable battery solutions.
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