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Aluminum Nanoparticles

Aluminum Nanoparticles

550 INR/Bottle

Product Details:

  • Purity 99.9%
  • Molecular Weight 26.98 g/mol
  • Molecular Formula Al
  • Poisonous Yes
  • Taste Odorless
  • Shape Spherical
  • Smell Odorless
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Aluminum Nanoparticles Price And Quantity

  • 550 INR/Bottle
  • 1 Gram
  • High
  • Less than 100 nm (typically 40-60 nm)
  • 15-30 m²/g
  • Tendency to agglomerate
  • Gray to black fine powder
  • Sealed anti-static bag or bottle, customized packaging upon request
  • Excellent
  • 12-24 months (if stored properly)
  • Surface oxide layer protects core
  • High purity, crystalline

Aluminum Nanoparticles Product Specifications

  • 99.9%
  • Industrial Grade
  • Metal nanoparticles
  • 26.98 g/mol
  • Yes
  • Al
  • Odorless
  • GB/T 14635-2008 or equivalent
  • Spherical
  • Catalysts, coatings, energetic materials, electronics, propellants, additive for polymers, conductive inks
  • 231-072-3
  • Aluminum
  • Odorless
  • Laboratory, research, industrial applications, nanotechnology
  • Nanoparticles
  • 2,470 C
  • 660.3 C
  • 2.7 Gram per cubic centimeter(g/cm3)
  • Nano-aluminum, Al Nanoparticles
  • 7603.10.00
  • Neutral
  • Insoluble in water, soluble in strong acids and bases
  • 7429-90-5
  • Al
  • Powder
  • Store in tightly sealed container, under inert atmosphere, away from moisture and heat
  • Aluminum
  • High
  • Less than 100 nm (typically 40-60 nm)
  • 15-30 m²/g
  • Tendency to agglomerate
  • Gray to black fine powder
  • Sealed anti-static bag or bottle, customized packaging upon request
  • Excellent
  • 12-24 months (if stored properly)
  • Surface oxide layer protects core
  • High purity, crystalline

Product Description

Aluminum Nanoparticles

MF:

Al

Chemical Name:

Aluminum

Purity:

> 99.99%

APS:

50 nm (Size Customization possible)

Form:

Nanopowder

Product Number:

NCZ201

CAS Number

7429-90-5

Aluminum Nanoparticles

Note:We can supply different size products of microparticles and Nanoparticles Sizerange powder according to the clientas requirements.

 



High-Purity, Versatile Nanoparticles

These aluminum nanoparticles stand out due to their high purity, with more than 99.9% refined crystalline content. The fine, spherical form ensures an effective surface area, maximizing performance in low-dose applications. Their superior physical and chemical properties enable transformative performance across a spectrum of industries, from electronics to propulsion.


Packaging and Storage

To maintain quality and ensure safety, aluminum nanoparticles are supplied in sealed anti-static bags or bottles. Customized packaging can be accommodated upon request. It is recommended to store the product in a tightly sealed container under an inert atmosphere, away from moisture and sources of heat, thereby preserving its integrity and extending its shelf life to up to two years.


Diverse Application Areas

Aluminum nanoparticles offer broad applicability as catalysts, not only accelerating chemical reactions but also enhancing energy efficiency in propellants, coatings, and energetic materials. They are increasingly utilized in developing advanced conductive inks for printed electronics, and as functional additives in polymer composites for improved conductivity and performance.

FAQ's of Aluminum Nanoparticles:


Q: How should aluminum nanoparticles be stored for optimal stability?

A: Aluminum nanoparticles should be kept in a tightly sealed container under an inert atmosphere, stored away from heat and moisture, to prevent oxidation and maintain integrity. Proper storage can extend shelf life to 12-24 months.

Q: What are the common uses and applications of these nanoparticles?

A: These nanoparticles are widely used as catalysts, in coatings and energetic materials, for electronics manufacturing, as propellant additives, in polymer composites, and in conductive inks-offering broad benefits in laboratory research and industrial environments.

Q: When is it necessary to use customized packaging for aluminum nanoparticles?

A: Customized packaging is recommended when the nanoparticles need to meet unique transportation, storage, or application requirements, such as specialized quantities or enhanced protective measures.

Q: Where do the benefits of aluminum nanoparticles come into play in conductive inks and coatings?

A: In conductive inks and coatings, aluminum nanoparticles provide excellent electrical conductivity and thermal management, ensuring efficient energy transfer and improved product reliability in advanced electronics and printed circuitry.

Q: What processes should be followed to safely handle and utilize aluminum nanoparticles?

A: While non-toxic, these nanoparticles must be handled carefully due to their high reactivity and tendency to agglomerate. Personal protective equipment should be worn, and workplace environments should be dust-controlled and ventilated to ensure safe handling.

Q: What are the solubility characteristics of aluminum nanoparticles?

A: Aluminum nanoparticles are insoluble in water, but they dissolve readily in strong acids and bases, making them suitable for specific chemical reaction processes and industrial formulations.

Q: How does the oxide surface layer benefit aluminum nanoparticles?

A: The natural surface oxide layer protects the highly reactive core from rapid oxidation, thereby enhancing stability during storage and application, and preserving the nanoparticle's desirable properties.

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