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Cellulose Nanopowder / Nanoparticles ((C6H10O5)n, 99.9%, APS <100 nm)
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Boron Trioxide Nanopowder / Nanoparticles (B2O3, 99.9%, APS<100nm)


Boron Trioxide Nanopowder / Nanoparticles (B2O3, 99.9%, APS<100nm)

Boron Trioxide Nanopowder / Nanoparticles (B2O3, 99%, APS<100nm)
Product No. CAS No. Formula Molecular Weight APS Purity Color Form
NRE-10008 1303-86-2 B2O3 69.62g/mol <100 nm(can be customized) 99.9% White Powder
Density 2.46 g/cm3
Melting Point 510 °C (950 °F)
Boiling Point 1860 °C (3380 °F)
Certificate of Analysis
B O Co Fe Mo Si Other
31.0% 68.9% 0.01% 200ppm 50ppm 50ppm 300ppm

Boron Trioxide Powder Applications

  • Glass: boron trioxide has played an important role in the production of special lenses, so it is not surprising that engineers and researchers have quickly found nanoscale applications. Not only does it play a key role in the production of certain nanocomposites and glasses, but it is also a central material for borosilicate glass and glass-based optical fibers. It is also used as an additive in various glasses and nanocomposites in which it plays a less important role.
    Synthesis of boron compounds: many boron compounds are synthesized from a boron trioxide base. The potential and unique properties of nanoscale boron trioxide in this process are the subjects of much attention in engineering and academic circles.
    Optics: Like many nanomaterials, boron trioxide has unique optical properties at such scales. This adds to its traditional role as a material for optical fibers and related materials and devices.

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