【LNO】Lithium nickel oxide lithium supplement LNO
【LNO】Lithium nickel oxide lithium supplement LNO
【LNO】Lithium nickel oxide lithium supplement LNO

【LNO】Lithium nickel oxide lithium supplement LNO

$604.08
item_No
Specifications
Price
MA-EN-OT-001501
1000g
$604.08

Details

This product is designed for use as a cathode lithium supplement additive in advanced lithium-ion battery systems, including ternary, lithium iron phosphate, and lithium cobalt oxide chemistries. It directly addresses lithium loss during initial formation cycles by releasing sufficient lithium ions during the first charge, thereby compensating for the irreversible consumption caused by negative electrode SEI film formation. As a lithium nickel oxide material, LNO facilitates simple, direct addition into cathode slurry preparation without complex process modifications. Its primary function is to improve cycling stability and extend battery service life in power and energy storage applications. The material is suitable for both high-energy-density consumer batteries and large-format power storage systems, offering a practical solution for enhancing long-term electrochemical performance.

As a new battery material additive, lithium supplement is developing rapidly and has a good application prospect. By effectively replenishing lithium ions, lithium supplements can significantly improve the performance of lithium-ion batteries and meet the market demand for high energy density and long cycle life. With the progress of technology, the application of lithium supplement will be more extensive.

Lithium Nickelate Cathode Lithium Supplement Additive

Introduction

This product is suitable for ternary and lithium iron phosphate power energy storage battery systems, as well as lithium cobalt oxide consumer battery systems. As a cathode lithium supplement additive, it is easy to operate and can be directly added when preparing cathode slurry. It releases sufficient lithium during the first charging process to compensate for the lithium loss caused by the formation of the negative electrode SEI film, ultimately improving battery cycle and achieving long service life.