NANO COBALT POWDER 99.9% 50NM HIGH PURITY SPHERICAL NANOPARTICLESRESEARCH GRADE MATERIAL
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Brand: ATOMFAIR®
This material requires storage in a sealed, dry environment to prevent oxidation and moisture absorption. Prolonged exposure to air, moisture, heat, or incompatible chemicals may degrade performance and pose safety risks.
- Environmental Storage Requirement: Store sealed in a dry, protected environment, avoiding prolonged exposure to air, moisture, heat, and incompatible chemicals.
How does the 50 nm particle size and spherical morphology of this cobalt nanopowder influence its suitability for sintering and powder metallurgy studies?
The 50 nm particle size and spherical morphology provide high surface area and uniform packing, which are critical for sintering studies and powder metallurgy. The product description explicitly lists powder metallurgy and sintering studies as target applications, and the 50 nm size supports particle-size-driven screening and material formulation work.
What are the critical storage conditions required to maintain the stability of 99.9% high-purity 50 nm cobalt nanopowder?
The nanopowder must be stored sealed in a dry, protected environment, avoiding prolonged exposure to air, moisture, heat, and incompatible chemicals. These conditions are specified in the product's storage notes to prevent oxidation or degradation of the 50 nm particles.
Is this 99.9% cobalt nanopowder suitable for catalysis and electrocatalysis research?
Yes, the product is explicitly prepared for catalysis and electrocatalysis research, as stated in the application scenarios. The high purity (99.9% metals basis) and 50 nm spherical morphology provide a well-defined material for catalytic screening and electrode development work.
The Nano Cobalt Powder 99.9% 50nm High Purity Spherical Nanoparticles (AF-CO50BD) is a research-grade metal nanopowder with 99.9% metals basis purity and 50 nm spherical morphology, suited for catalysis, conductive paste, electrode development, powder metallurgy, and EMI shielding studies. Its high surface area and purity enable particle-size-driven screening, but require strict handling to prevent oxidation and moisture degradation.
Positive
- High purity for impurity-sensitive workflows: 99.9% metals basis purity minimizes trace metal contamination, supporting reliable results in catalysis, electrocatalysis, and electrode R&D.
- Spherical 50 nm morphology for formulation: Spherical nanoparticles at 50 nm provide consistent surface area and packing behavior, enabling particle-size-driven screening in conductive pastes, coatings, and sintering studies.
Trade-offs
- Requires sealed dry storage: Prolonged exposure to air and moisture can degrade the nanopowder, necessitating sealed storage in a dry, protected environment to maintain performance.
- Research grade, not production ready: Intended for laboratory-scale R&D use only; handling requires appropriate PPE and SDS review, with no validation for industrial-scale processing.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).






