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Silver Copper Alloy Nanoparticles

Silver Copper Alloy Nanoparticles

9800 INR/Gram

Product Details:

  • Purity 99.9%
  • Hardness 150 HV (approx)
  • Strength High tensile strength
  • Product Type Nanoparticles
  • Material Silver, Copper
  • Alloy Silver-Copper Alloy
  • Shape Spherical
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Silver Copper Alloy Nanoparticles Price And Quantity

  • 50 Gram
  • 9800 INR/Gram

Silver Copper Alloy Nanoparticles Product Specifications

  • 20-60 nm (nanoscale range)
  • Spherical
  • Nanoparticles
  • <0.1%
  • 99.9%
  • Catalysis, Antibacterial coatings, Electronics, Conductive inks, Sensor devices
  • Silver-Copper Alloy
  • Silver (Ag) and Copper (Cu) alloyed at nanoscale
  • 150 HV (approx)
  • High tensile strength
  • Silver, Copper
  • Greyish silver

Silver Copper Alloy Nanoparticles Trade Information

  • 1000-10000 Gram Per Day
  • 2-3 Days
  • All India

Product Description

We are one of the main names in the business in offering quality guaranteed cluster of Silver Copper Alloy Nanoparticles to our important client. This item is made by utilizing ideal quality required materials under the supervision of our experts. It finds its applications in the different industries such as, medical, food, health care, consumer for industrial purposes. We are putting forth this Silver Copper Alloy Nanoparticles to our clients in the most sensible evaluating accessible in the market.

Product Details :

  • MF:                                            Ag:Cu
  • Chemical Name:                 Silver Copper Alloy Nanoparticles
  • Purity:                                       > 99.99%
  • APS:                                            < 80 nm (Size Customization possible)
  • Form                                           Nanopowder
  • Product Number:                NCZA133
  • CAS Number                          7440-22-4 / 7440-50-8


Enhanced Performance in Nano Applications

Silver Copper Alloy Nanoparticles deliver remarkable conductivity and strength, making them suitable for advanced electronic components, innovative sensor devices, and high-performance catalytic systems. Their nanoscale size and high surface area enable efficient reactivity and reliable integration into various technologies.


Reliable Dispersibility and Stability

With excellent dispersibility in polar solvents and robust stability under standard storage conditions, these nanoparticles are easily handled for manufacturing and research purposes. Their shelf life of 2 years ensures consistent results and dependable material performance for both experimental and industrial uses.

FAQs of Silver Copper Alloy Nanoparticles:


Q: How are Silver Copper Alloy Nanoparticles commonly used in industry?

A: These nanoparticles are frequently utilized in catalysis, antibacterial coatings, electronics, conductive inks, and sensor devices due to their high conductivity, strength, and reactivity.

Q: What specific benefits do these nanoparticles offer for electronic applications?

A: Their enhanced electrical and thermal conductivity, combined with nanoscale dimensions and high purity, allow for efficient signal transmission and thermal management in electronic circuits and devices.

Q: When should Silver Copper Alloy Nanoparticles be stored or handled with caution?

A: While stable under standard storage conditions, they should always be handled with care by keeping them in a cool, dry place, tightly sealed, to preserve their properties and prevent moisture exposure.

Q: Where are these nanoparticles typically manufactured or available in India?

A: They are produced and supplied by manufacturers, producers, exporters, importers, dealers, retailers, and wholesalers across India, making them accessible for both commercial and research purposes.

Q: What process ensures the nanoparticles remain pure and uncontaminated during storage?

A: Packaging in sealed glass bottles or vacuum-sealed pouches protects the nanoparticles from environmental contamination and moisture, preserving their 99.9% purity and stability for up to 2 years.

Q: How can these nanoparticles benefit antibacterial coatings and sensor device development?

A: Their polycrystalline structure and high surface area enhance reactivity for antibacterial action, while superior conductivity aids sensor sensitivity and reliability in device applications.

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