Ultra-High Nickel NCM90 Cathode Powder (222 mAh/g)

Price range: $300.00 through $540.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Buy high-nickel cathode powder price deals for ATOMFAIR NCM (90:6:4): 222 mAh/g Cathode Active Material. RoHS compliant standard. Contact inquiry@atomfair.com.

Description

ATOMFAIR NCM (90:6:4): 222 mAh/g Cathode Active Material

RESEARCH GRADE MATERIAL

Product Overview

Engineered for advanced energy storage exploration, this premium ultra-high nickel cathode active material serves as a high-fidelity benchmarking matrix for state-of-the-art electrochemical cells. Specially configured with an optimized large particle structure, it delivers an extraordinary initial specific capacity while effectively suppressing gas swelling behavior during demanding testing loops. Secure optimal institutional high-nickel cathode powder price points for scaled research and high-capacity architecture development.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Product Structural Configuration Big particle spherical matrix
Specific Surface Area (SSA BET) 0.49 m²/g
Tap Density (TD) 2.63 g/cm³
Pellet Density (PD) 3.17 g/cm³
Surface Residual Alkali Li₂CO₃ 0.22 %
Surface Residual Alkali LiOH 0.35 %
pH Value 11.6
2. Cathode (Positive Electrode) Parameters
0.1C Charge Specific Capacity 242.9 mAh/g (Coin Cell Half-Cell, 3.0V–4.3V)
0.1C Discharge Specific Capacity 222.8 mAh/g (Coin Cell Half-Cell, 3.0V–4.3V)
Initial Coulombic Efficiency (ICE) 91.7 %
0.5C Discharge Rate Capacity 206.5 mAh/g
1.0C Discharge Rate Capacity 199.9 mAh/g
Target Cathode Electrode Density 3.2 g/cm³
3. Anode (Negative Electrode) Parameters
Testing Counter Electrode Configuration Lithium Metal Target Half-Cell Foils
4. Separator & Physical Package Metrics
Particle Size Distribution Dmin / Dmax 6.6 μm / 25.2 μm
Particle Size Distribution D10 9.6 μm
Particle Size Distribution D50 13.1 μm
Particle Size Distribution D90 17.7 μm
Transition Metal Molar Ratio (ICP) Ni: 90.4 mol% | Co: 5.8 mol% | Mn: 3.8 mol%
Core Base Element Content Li: 7.5 %
Chemical Impurity Profile (ICP) Fe: 0 ppm | Na: 32 ppm | Ca: 11 ppm | Cu: 0 ppm | S: 299 ppm
Manufacturing Rules Processed under strict RoHS compliant standard conditions
Alternative Options Explore our related catalog or custom dimensions. For urgent technical custom requests or bulk inquiries, please contact our support team.


Key Features & Advantages

  • Outstanding Initial Capacity: Features an ultra-high Ni90 chemical matrix that exhibits highly enhanced specific discharge capacity reaching 222.8 mAh/g.
  • Suppressed Swelling Dynamics: Specially structured via advanced particle engineering to guarantee minimal volume expansion and superior structural resistance during high-voltage cell charging.
  • High Coulombic Performance: Engineered surface properties minimize active lithium losses, delivering a high initial efficiency of 91.7% under standard half-cell setups.

APPLICATION SCOPE: High-energy-density lithium-ion battery prototyping, ultra-high nickel layered cathode research, structural swelling validation, and customized blend matrix engineering.
PACKAGING: Hermetically sealed inside pristine environmental container kits to shield the active layered high-nickel phase from atmospheric moisture.
IMPORTANT NOTICE: Ultra-high nickel active materials exhibit extreme environmental sensitivity. Keep all packaging completely sealed and operate solely within anhydrous inert glovebox environments to suppress ambient phase decomposition or surface residual lithium growth before evaluation.

Frequently Asked Technical Questions

Why is ATOMFAIR NCM (90:6:4): 222 mAh/g Cathode Active Material preferred for lithium battery R&D?

ATOMFAIR NCM (90:6:4): 222 mAh/g Cathode Active Material functions as a premier ultra-high nickel solution for next-generation cell exploration. It delivers exceptional initial discharge specific capacity and robust grain structural parameters, significantly boosting performance metrics and phase purity during laboratory testing workflows.

How to minimize high nickel cathode surface residual lithium?

To successfully solve how to minimize high nickel cathode surface residual lithium without secondary contamination, this material must be handled strictly according to inert gas glovebox storage protocols before thermal processing.

How does this ultra-high nickel cathode material compare to traditional alternatives regarding swelling?

Compared to standard alternatives, the optimized matrix of this product incorporates advanced lattice protection. This unique architecture dramatically enhances structural resistance against degradation and gas evolution, ensuring a low swelling profile during long-term validation.

What material processing benefits does the microstructure of this NCM powder offer?

Boasting engineered particle structuring and optimized specific surface area, this product offers superior sinterability. The controlled form factor facilitates lower thermal processing thresholds and promotes ideal grain boundary integration during cell fabrication.

How is the phase purity and quality control of this research-grade batch validated?

Every competitive batch undergoes rigid analytical quality validation testing. Total elemental and metallic impurities are strictly regulated below strict industry thresholds to eliminate parasitic electronic leakage and maintain uncompromised data reproducibility.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

Additional information

Weight

200g, 1000g