Solid-state electrolyte-coated nickel cobalt manganese NCM811 (single crystal)
Solid-state electrolyte-coated nickel cobalt manganese NCM811 (single crystal)
Solid-state electrolyte-coated nickel cobalt manganese NCM811 (single crystal)

Solid-state electrolyte-coated nickel cobalt manganese NCM811 (single crystal)

$60.41
Model:
MA-EN-CA-0045
item_No
Specifications
Price
MA-EN-CA-004501
20g
$60.41

Details

This solid-state electrolyte-coated nickel cobalt manganese NCM811 (single crystal) is developed for advanced lithium-ion battery cathode research, combining single-crystal 811 morphology with a lithium niobate coating (approximately 0.6% coating amount) to achieve high capacity and a high first-cycle efficiency. The material requires vacuum-sealed storage and strict humidity control throughout handling due to its moisture sensitivity. It is specifically designed for half-cell and full-cell evaluations using NCM electrolyte (e.g., KLD-1230C), with recommended electrode baking at 85 °C for 4 hours. The single-crystal structure enhances structural stability and cycling performance, making it suitable for studies on high-energy-density cathode materials and solid-state battery interfaces. This product is ideal for researchers focusing on cathode optimization, coating effects, and electrochemical performance characterization.

The material needs to be vacuum sealed for storage

The material is prone to water absorption, and humidity control is required throughout the entire production process

The electrolyte used during testing is NCM electrolyte (KLD-1230C)

Baking conditions for electrodes: Bake at 85 ℃ for 4 hours


The cathode electrode of lithium-ion batteries has a morphology of single crystal 811, and the coating material is lithium niobate (coating amount~0.6%), which has the characteristics of high capacity and high first effect

Physical and chemical properties

image.png

Half-cell test

e6f997ccc25bd671a3a49ea699c55bb.jpg

81d084ebef004e8654f9033c50cfd1b.jpg

36984c7ff02b75016570f4a1ecf24ad.jpg

0dbaa4ab3a47e42e78285c0e7a87768.jpg

CC rate charging; CV constant voltage charging; DC rate discharge