Yttria Nanopowder (Y, APS: <80nm, Purity: >99.5%)

Yttria Nanopowder

Product: Yttria Nanopowder

Quality Control: Each lot of NANOSHEL Yttria Nanopowder (Y, 99.9%, <80nm) was tested successfully.

Yttrium Nanoparticles - SEM

Yttrium Nanoparticles – SEM

Yttrium Nanoparticles - Size Analysis

Yttrium Nanoparticles – Size Analysis

Material Yttria Nanopowder
Stock No. NS6130-01-181
APS <80nm Confirm
CAS 7440-65-5 Confirm
Purity >99.5% Confirm
Color Black Confirm
Density 4.472 g/cm³ Confirm
Molecular Weight 88.905 g/mol Confirm
Melting Point 1526 °C Confirm
Boiling Point 2930 °C Confirm
Thermal Conductivity 17.2 W/(m-K) Confirm
Available Quantities 25Gms, 50Gms, 100Gms and larger quantities
Main Inspect Verifier Manager QC
Typical Chemical Analysis

Y/TREM >99.5 %
Fe <0.2 %
Si <0.05 %
Ca <0.02 %
Mg <0.01 %
Zn <0.01 %
Al <0.05 %
Mo <0.05 %

 Experts Review:

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Jules L. Routbort (Argonne National Laboratory, Argonne, USA)
Metallic nanoparticles have attracted scientists over a century and now heavily utilized in various fields. They are a  center of interest because of their huge potential in nanotechnology. These materials can be synthesized and modified with various functional groups, which allows them to be conjugated with ligands, antibodies, drugs and thus can be used in a wide range of applications in Catalysis, Sensing, Imaging etc.


Dr. Ms. Kamiko Chang, Ph.D(University of Science and Technology Beijing, China)
Metal nanoparticles possess large surface energy; hence have the ability to adsorb small molecules. The recognition and capture of molecules at solid surfaces has numerous environmental and Bioanalytical applications. Metal nanoparticles are used as probe in detection and imaging of biomolecules due to ease of functionalization, greater sensitivity, size dependent optical properties and Photostability.


images (12) Dr. Nicholaos G. Demas (Newcastle University School Of Machanical & Systems Engg. UK)
Nanoscaled materials are usually classified as materials having structured components with at least one dimension less than 100 nm. Smaller nanoparticles containing 104 or less atoms are referred to as nanoclusters. These clusters are of interest because they can explain the transition from atomic properties to bulk material properties. There are different types of nanoclusters are: vander walls nanoclusters, ionic nanoclusters, metal nanoclusters.


images Takeo Oku (Department of Materials Science, The University of Shiga Prefecture, Hassaka 2500, Hikone, Shiga 522-8533, Japan)
Nanoparticles (NPs), and noble metal NPs, are versatile agents with a variety of applications. The unique characteristics of noble metal NPs, such as high surface-to-volume ratio, broad optical properties, ease of synthesis, and facile surface chemistry and functionalization hold pledge in various fields.. Noble metal NPs (e.g., gold, silver, or a combination of both) present highly tunable optical properties, which can be easily tuned to desirable wavelengths according to their shape (e.g., nanoparticles, nanoshells, nanorods, etc.), size (e.g., 1 to 100 nm), and composition (e.g., core/shell or alloy noble metals), enabling their imaging and photothermal applications.


kritter Dr. Ms. Guixin (Susan), Ph.D (Switzerland-Institute for Inorganic Chemistry, Zurich, Switzerland)
Metal  NPs can also be easily functionalized with various moieties, such as antibodies, peptides, and/or DNA/RNA to specifically target different cells and with biocompatible polymers (e.g., polyethylene glycol and PEG).


Yttria Nanopowder

Yttria Nanopowder

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Contact Us for Yttria Nanopowder
From us, you can easily purchase Yttria Nanopowder at great prices. Place online order and we will dispatch your order through DHL, FedEx, UPS. You can also request for a quote by mailing us at sales@nanoshel.com Contact: +1 302 268 6163 (US and Europe), Contact: +91-9779550077 (India). We invite you to contact us for further information about our company and our capabilities. At Nanoshel, we could be glad to be of service to you. We look forward to your suggestions and feedback.


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