ATOMFAIR NCM (95:4:1) Small Particle Cathode Precursor

Price range: $280.00 through $500.00

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 ncm precursor active material price deals for ATOMFAIR NCM (95:4:1) Small Particle Cathode Precursor. RoHS compliant. Contact inquiry@atomfair.com.

SKU: AAEPNCM955A0A0
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Description

ATOMFAIR NCM (95:4:1) Small Particle Cathode Precursor

RESEARCH GRADE MATERIAL

Product Overview

Engineered for advanced energy storage exploration, this premium small particle size high-nickel ternary cathode precursor serves as a high-fidelity benchmarking matrix for state-of-the-art electrochemical cells. Synthesized under an optimized microcrystalline morphology with precise surface modification and single-crystal orientation tracking, it bridges high capacity ceilings with swift rate capability networks. This material successfully drives variable elimination during critical prototyping validation. Secure optimal institutional high nickel ncm precursor active material price points for scaled solid-state cell research.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Product Phase Form Factor Controllable morphology spherical hydroxide pre-matrix powder
Specific Surface Area (BET) 9.16 m²/g (Standard Requirement: 5.00–25.00 m²/g)
Tap Density (TD) 1.90 g/cm³ (Standard Requirement: ≥ 1.40 g/cm³)
Water Content (Karl Fischer) 0.21 wt% (Standard Requirement: < 0.50 wt%)
2. Precursor Element Composition (mol%)
Nickel (Ni) Content 94.98 mol% (Standard Internal Matrix Window: 80.00–98.00 mol%)
Cobalt (Co) Content 4.02 mol%
Manganese (Mn) Content 1.00 mol%
3. Downstream Target Application Configurations
Testing Device Architecture Advanced solid-state active cathodes / Premium high-capacity EV cells
4. Separator & Physical Package Metrics
Particle Size Distribution D50 3.56 μm (Standard Requirement: 2.00–5.00 μm)
Particle Size Distribution Span 0.85 (Standard Requirement: 0.60–1.00)
Trace Contaminant Sodium (Na) 150.00 ppm (Standard Boundary limit: < 200 ppm)
Trace Contaminant Sulfur (S) 1122.00 ppm (Standard Boundary limit: < 1500 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

  • Ultra-High Ni95 Crystal Energy Cap: Formulated with a dominant 95 mol% nickel composition profile to thoroughly expand downstream calcined specific capacities to maximum benchmark levels.
  • Engineered Sub-Micron Monocrystalline Core: Concentrated sub-micron grain sizing (D50: 3.56 μm) paired with surface structural modification unlocks immaculate grain boundary packaging within advanced solid-state electrode fields.
  • Elite Particle Density Parameters: High tap density profile reaching 1.90 g/cm³ ensures superb slurry coating compaction thresholds during cell工程 engineering development lines.

APPLICATION SCOPE: Solid-state battery cathode active matrix synthesis, small-particle ultra-high-nickel benchmarking, fast-charging cell validation, and microcrystalline morphologic layout tracking research.
PACKAGING: Sealed hermetically inside high-barrier environmental container systems to avoid external atmospheric cross-contamination.
IMPORTANT NOTICE: High-nickel hydroxide matrices possess intense surface reactivity and affinity to room ambient humidity. Keep all packaging completely sealed and operate exclusively within dry, anhydrous inert-gas glovebox platforms to suppress phase modification or moisture degradation before validation thermal processing.

Frequently Asked Technical Questions

Why is ATOMFAIR NCM (95:4:1): Small Particle Size High-Nickel Cathode Precursor preferred for solid-state battery R&D?

ATOMFAIR NCM (95:4:1): Small Particle Size High-Nickel Cathode Precursor functions as a premier solution for advanced energy cells. It delivers exceptional volumetric layout optimization and tightly controlled particle spacing via single-crystallization technologies, significantly boosting performance metrics and phase purity during laboratory testing workflows.

How to prevent nickel rich precursor moisture degradation?

To successfully solve how to prevent nickel rich precursor moisture degradation without secondary contamination, this material must be handled strictly according to inert gas glovebox storage protocols before thermal processing.

What operational stability advantages does the 95:4:1 transition metal molar profile of this precursor provide?

Compared to standard lower-nickel alternatives, the optimized matrix of this product incorporates an ultra-high nickel content (Ni ± 95 mol%). This unique architecture dramatically enhances the ultimate attainable specific discharge capacity limits, preserving long-term validation integrity.

What material processing benefits does the small particle size microstructure of this powder offer?

Boasting engineered microcrystalline structuring (D50: 3.56 μm) and controlled narrow span (0.85), 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

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