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Silicon Carbide Nanowire

Silicon Carbide Nanowire

Product Details:

  • Density 3.2 Gram per cubic centimeter(g/cm3)
  • Ph Level Neutral (7)
  • Shape Wire-like, cylindrical nano structure
  • Storage Store in tightly sealed container, dry and cool location
  • HS Code 28492090
  • Purity >99%
  • Other Names SiC nanowire, Carborundum nanowire
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Silicon Carbide Nanowire Product Specifications

  • Odorless
  • SiC
  • Insoluble in water, soluble in molten alkalis
  • >2700C (decomposes)
  • Non-metallic inorganic compound
  • Powder, Nanowire bundle
  • Silicon Carbide
  • Sublimes above 2700C
  • Technical/Industrial grade
  • 2.65
  • 40.10 g/mol
  • Semiconductors, high-temperature sensors, reinforcing materials, field emission devices, composite materials, lithium-ion batteries
  • Odorless and tasteless
  • SiC nanowire, Carborundum nanowire
  • Nanowire
  • Yes
  • SiC
  • 409-21-2
  • Neutral (7)
  • Industrial/Research grade
  • 3.2 Gram per cubic centimeter(g/cm3)
  • Industrial strengthening, research, electronics, energy storage
  • >99%
  • Silicon Carbide (SiC)
  • 28492090
  • 206-991-8
  • Store in tightly sealed container, dry and cool location
  • Wire-like, cylindrical nano structure

Silicon Carbide Nanowire Trade Information

  • Australia, North America, South America, Eastern Europe, Western Europe, Middle East, Africa, Central America, Asia
  • All India

Product Description



Experience the latest in materials technology with our superlative Silicon Carbide Nanowire. Polished to perfection, this potent nanowire features a high degree of crystallinity, robust Youngs modulus (~500 GPa), and remarkable thermal stability. With an average diameter range of 20200 nm and lengths of tens to hundreds of microns, it excels as a high-performance conductor and reinforcing agent. Ending soon: pick yours and boost your research or industrial processes with this advanced, wire-like, nanostructured powdervacuum-sealed for optimal shelf life.

Features and Versatility of Silicon Carbide Nanowire

Silicon Carbide Nanowire represents a breakthrough in nanostructured materials, offering excellent thermal stability, substantial tensile strength, and a high surface area. These characteristics make it suitable for diverse applications, from high-temperature sensors to lithium-ion batteries. Whether used as a reinforcing material or in energy storage, its technical and industrial grade ensures robust performance. Typical forms include nanowire bundles and powder, designed to meet the critical demands of research and electronics industries.


Supply, Sample Policy, and Certifications for Silicon Carbide Nanowire

Our Silicon Carbide Nanowire supply operation ensures timely handover for global customers, with a secure minimum order quantity of just 1 gram. Fully compliant with standard certifications, each batch is quality-checked before being freighted. Samples can be handed over upon request, facilitating smooth purchasing decisions. All product shipments are vacuum-sealed to guarantee purity and stability during transit, supporting a reliable and consistent supply for industrial, research, and commercial partners.


Product Silicon Carbide Nanowire
CAS Number 409-21-2
Stock No. NCZNW115-19
Chemical Formula SiC
Molar Mass 40.10 g/mol
Density 3.16 g/cm3
Melting point 2,830 C
Diameter 350 nm (customization available)
Length 100 m (customization available)


FAQs of Silicon Carbide Nanowire:


Q: How is Silicon Carbide Nanowire typically used in industry and research?

A: Silicon Carbide Nanowire is widely employed for industrial strengthening, as reinforcement in composite materials, in semiconductor devices, field emission technologies, and energy storage applications such as lithium-ion batteries due to its high tensile strength and excellent thermal stability.

Q: What is the recommended process for storing Silicon Carbide Nanowire?

A: It is best stored in a tightly sealed container within a cool, dry location. Proper storage ensures the nanowire maintains its high purity and shelf life of up to 24 months under recommended conditions.

Q: What benefits does the high crystallinity of Silicon Carbide Nanowire provide?

A: High crystallinity imparts exceptional mechanical properties, superior electrical conductivity, and robust thermal stabilitymaking the nanowire highly reliable in demanding engineering and electronic applications.

Q: Where can I obtain certification or quality documentation for the nanowire supplied?

A: Certification and quality documentation, including purity certificates, are available upon request with all orders, ensuring transparency and confidence in the products industrial and research-grade standards.

Q: What is the process for acquiring a sample of Silicon Carbide Nanowire?

A: You may request a product sample through our sales channel. Samples are securely handed over, typically vacuum-sealed, and shipped by freight to your location, facilitating preliminary testing or evaluation before bulk ordering.

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