Titanium Nanopowder, 50nm, 99.9% | 72951 | SRL Chem

SRL Chemicals Dealer | eqipped

Titanium Nanopowder, 50nm, 99.9% | 72951 | SRL Chem

High-purity 50nm titanium nanopowder (99.9%) for research, catalysis, and nanomaterial applications. Ultra-fine particle size ensures superior performance.

10,000.00

Description

Specifications Table

Product NameTitanium Nanopowder, 50nm, 99.9%
Quantity/Pack Size1 Gms
FormNanopowder
Grade99.9% Purity
ApplicationResearch, Catalysis, Nanomaterials, Coatings

Product Description

Titanium nanopowder with a particle size of 50nm and 99.9% purity is a high-performance material designed for advanced research and industrial applications. Its ultra-fine structure enhances reactivity and surface area, making it ideal for catalysis, nanomaterial synthesis, and high-tech coatings. Researchers and educators rely on this grade for consistent results in experiments and product development.

At eqipped, we ensure that every batch of titanium nanopowder meets stringent quality standards, providing you with a reliable material for your lab or project. Whether you’re working on energy storage, biomedical applications, or material science, this nanopowder delivers exceptional performance.

Upgrade your research with premium 50nm titanium nanopowder—order now for fast, secure delivery.

FAQs

What is the particle size of this titanium nanopowder?

The particle size is 50nm, ensuring high reactivity and surface area for advanced applications.

Is this titanium nanopowder suitable for biomedical research?

Yes, its 99.9% purity makes it ideal for biomedical coatings, implants, and other sensitive applications.

How should I store titanium nanopowder?

Store in a sealed container in a cool, dry place, away from moisture and heat sources.

Can I buy titanium nanopowder in bulk?

Yes, eqipped offers bulk quantities for research and industrial needs. Contact us for custom orders.

What are the key advantages of using 50nm titanium nanopowder?

Its ultra-fine size enhances reactivity, surface area, and performance in catalysis, coatings, and nanomaterial synthesis.

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