Tungsten (W) nanoparticles/nanopowder ( W, 99.7%, 80~100nm)

Tungsten (W) nanoparticles/nanopowder ( W, 99.7%, 80~100nm)

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Product Name Tungsten (W) nanoparticles/nanopowder ( W, 99.7%, 80~100nm)
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Product Code Np-Ag-9821XH
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Product Properties

Tungsten (W) Nanoparticles/ nanopowder ( W, 99.7%, 80~100nm)
Tungsten (W) Nanoparticles Purity: 99.7% trace metals basis
Tungsten (W) Nanoparticles Appearance: Black nanopowder
Tungsten (W) Nanoparticles APS: 80-100 nm
Tungsten (W) Nanoparticles SSA: 4-8 m2/g
Tungsten (W) Nanoparticles Morphology: spherical
Tungsten (W) Nanoparticles Bulk density: 1.4-4.0 g/cm3
Tungsten (W) Nanoparticles True density: 19.5 g/cm3
9821XH Tungsten ( W ) Nanoparticles/ Nanopowder Specification for Download 
9821XH Tungsten Nanoparticles/ Nanopowder MSDS for Download



Health and Safety


Hazard StatementsFlammable
Transport InformationUN3089
Suggest equipment
Eyeshields, Gloves, type N95 (US), type P1 (EN143) respirator filter



Tungsten ( W ) Nanopowder General Description

A fine black powder composed of tungsten particles ranging from 40 to 100nm in diameter, tungsten nanopowder works as a material in an array of applications
including microelectronics, metalworking, chemical coatings, and more. The unique optical, electric, and medical applications of tungsten as a nanostructure 
makes it a material of high interest to researchers and engineers in a variety of disciplines.  


Tungsten ( W ) Nanopowder Applications

 

  •      •  Coatings. Coatings produced using tungsten nanoparticles offer a variety of benefits unique to the material. Electrochromic coatings, metal 
  •          ceramic coatings, specialized coatings for optic applications, and other applications all benefit from the use of tungsten nanoparticles. 
  •          Continued research into the special potential of tungsten nanocoatings promises additional insight.

  •      •  Microelectronics films. Tungsten nanoparticles offer unique benefits in the production of films for microelectronic applications.
             The full potential of such films has yet to be thoroughly researched, but initial findings prove intriguing.

  •      •  Sintering additives. Tungsten nanoparticles have shown exceptional potential as a sintering additive, with research indicating nanopowder
            will make traditionally difficult metallurgic processes much easier through proper application.

  •      •  Vacuum contactors and vacuum load switches. The unique traits of tungsten at nanoscale sizes makes it an ideal material for the manufacture
            of vacuum contactors and vacuum load switches. Research into the full potential of tungsten in this role is still sparse, but early indications are positive.