Skip to product information
Single-Crystal LiNi0.95Co0.025Mn0.025O2 (NCM952525) Powder for Li-Ion Battery Cathode, 50 g/bottle, CLIBCSCNCM952525

Single-Crystal LiNi0.95Co0.025Mn0.025O2 (NCM952525) Powder for Li-Ion Battery Cathode, 50 g/bottle, CLIBCSCNCM952525

$189.00 USD
In Stock SKU: CLIBCSCNCM952525
Use your own shipping account?

We support FedEx, UPS, and DHL third-party billing for institutional customers.

Place your order first, then email shipping@echemsupplies.com with your account details and order number. We'll generate the label using your account and refund your shipping charges, less a handling fee.

Review third-party shipping terms →


NCM952525 (LiNi0.95Co0.025Mn0.025O2) cathode is an ultra-high nickel layered oxide material with single crystalline structure for lithium-ion batteries. Conventional NCM particles are polycrystalline—large agglomerates made of many tiny, nanosized "grains" held together. During charging and discharging, the volume change of these grains causes them to rub against each other, leading to microcracking along the internal grain boundaries.

Single-crystal NCM952525 eliminates this problem by making each cathode particle a single, monolithic crystal.

Part Number

CLIBCSCNCM952525 (C-LIB-C-SCNCM952525)

Chemical Composition

Li: 7.15 wt%

Ni: 57.05 wt%, Co: 1.77 wt%, Mn: 1.16 wt%

Particle Size Distribution

D50 =3.01 um

Tap Density 1.44 g/cm3
Specific Area 0.85 m2/g
XRD
First Discharging Capacity

~222.4 mAh/g (0.1 C)

~206.8 mAh/g (0.5 C)

~198.3 mAh/g (1.0 C)

First Columbic Efficiency

89.7% 

Package Grade

50 g/bottle (a larger quantity also can be supplied upon request)

 

Notes: (1) Please store the SCNCM952525 powder in a dry area (glovebox is preferred); (2) The battery powder is highly recommended to be dried at 80-100°C in a vacuum oven for 6-12 h before use. 

References

  1. Y. Feng, et al. Exploring stacking pressure-induced mechanical failure of a Ni-rich cathode in sulfide solid-state batteries, Chem. Sci., 2026, 17, 4601-4611
  2. R. Chu, et al. Progress of Single-Crystal Nickel-Cobalt-Manganese Cathode Research, Energies 2022, 15(23), 9235

You may also like