Thank you!

Your quote has been successfully submitted!

For products requiring additional information, our team will contact you within 1 business day

Failed

There was an error submitting your quote. Please try again.

MSE PRO Yttrium(III) Oxide (Y2O3) Nanopowder, 20nm, ≥99.99% (4N) Purity, 100g– MSE Supplies LLC

Overstock Sale - Select Products 10% Off on Orders of $500 or More! Promo Code:

SAVING10

Shop Now
Menu

This product has been added to the cart.

Yttrium(III) Oxide (Y<sub>2</sub>O<sub>3</sub>) Nanopowder, 20nm, ≥99.99% (4N) Purity - MSE Supplies LLC

MSE PRO Yttrium(III) Oxide (Y2O3) Nanopowder, 20nm, ≥99.99% (4N) Purity, 100g

SKU: PO4506

  • $ 29595



MSE PRO™ Yttrium(III) Oxide (Y2O3) Nanopowder, 20nm, ≥99.99% (4N) Purity, 100g

  • Product Number: PO4506
  • Formula: Y2O3
  • CAS Number: 1314-36-9
  • Molecular Weight: 225.81g/mol
  • Particle Size: 20nm
  • Purity: ≥99.99% 4N
  • Appearance: White powder

* TREO - Total Rare Earth Oxides

    Applications

    Yttrium(III) oxide (Y2O3) nanoparticles are used to make phosphors for color television tubes, yttrium iron garnets for use as microwave filters, high temperature superconductors and gas lighting. Another major use of the Y2O3 nanoparticles is in inorganic synthesis. They are also used as additives in the coatings used in high-temperature applications, paints and plastics for guarding against UV degradation and also in making permanent magnets.

    Notes: More detailed product information including SDS, certificate of analysis (COA), customized order are available upon request.

    Impurity Analysis (wt%) by ICP
    Mg ≤0.0005 Fe ≤0.0005
    Si ≤0.0005 K ≤0.0005
    La ≤0.0010 Sm ≤0.0010
    Gd ≤0.0010 Gd ≤0.0010
    Eu ≤0.0010 Dy ≤0.0010
    Pr ≤0.0005 Er ≤0.0010
    Ce ≤0.0005 S ≤0.0005
    Others ≤0.0005

     

    References:

    [1] Preparation of Y2O3:Eu Phosphor Particles of Filled Morphology at High Precursor Concentrations by Spray Pyrolysis,  Adv. Mater., 12: 451-453.

    [2] Hajizadeh-Oghaz, M., Razavi, R.S., Barekat, M. et al. Synthesis and characterization of Y2O3 nanoparticles by sol–gel process for transparent ceramics applications. J Sol-Gel Sci Technol 78, 682–691 (2016).