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Yttrium Iron Oxide Nanoparticles / Nanopowder

Linear Formula:
Y3Fe5O12
MDL Number
MFCD00210618
EC No.:
235-053-0

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Product Product Code SAFETY DATA Technical data

(2N5) 99.5% Yttrium Iron Oxide Nanopowder

Y-FEO-025-NP SDS > Data Sheet >

(3N) 99.9% Yttrium Iron Oxide Nanopowder

Y-FEO-03-NP SDS > Data Sheet >

(4N) 99.99% Yttrium Iron Oxide Nanopowder

Y-FEO-04-NP SDS > Data Sheet >

(5N) 99.999% Yttrium Iron Oxide Nanopowder

Y-FEO-05-NP SDS > Data Sheet >
WHOLESALE/SKU 0000-742-5753
Oxide IonHigh Purity, D50 = +10 nanometer (nm) by SEMYttrium Iron Oxide Nanopowder or Nanoparticles are typically 5 - 45 nanometers (nm) with specific surface area (SSA) in the 20-40 m2/g range. Yttrium Iron Oxide Nanopowder are also available in passivated and Ultra high purity and high purity and coated and dispersed forms. They are also available as a dispersion through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites.Development research is underway in Nano Electronics and Photonics materials, such as MEMS and NEMS, Bio Nano Materials, such as Biomarkers, Bio Diagnostics & Bio Sensors, and Related Nano Materials, for use in Polymers, Textiles, Fuel Cell Layers, Composites and Solar Energy materials. Nanopowders are analyzed for chemical composition by ICP, particle size distribution (PSD) by laser diffraction, and for Specific Surface Area (SSA) by BET multi-point correlation techniques. Novel nanotechnology applications also include quantum dots. High surface areas can also be achieved using solutions and using thin film by sputtering targets and evaporation technology using pellets, rod and foil Research into applications for yttrium nanocrystals has focused on their potential electrical, magnetic, optical, catalytic, biomedical and bioscience properties and for use in coatings, plastics, nanowire, nanofiber and textiles and in alloy and catalyst applications . Yttrium Iron Oxide Nanopowder is generally immediately available in most volumes. Additional technical, research and safety (SDS) information is available.
Compound Formula Fe5O12Y3
Molecular Weight 737.94
Appearance Green powder
Melting Point N/A
Boiling Point 100 nm (BET)
Density N/A
Solubility in H2O N/A
Exact Mass N/A
Yttrium iron oxide, Yttrium ferrite garnet, YIG, Iron yttrium oxide
Signal Word Warning
Hazard Statements H315-H319-H335
Hazard Codes Xi
Risk Codes 36/37/38
Safety Statements 26-36/37
RTECS Number N/A
Transport Information N/A
WGK Germany 3
Linear Formula Y3Fe5O12
Pubchem CID 16217670
MDL Number MFCD00210618
EC No. 235-053-0
IUPAC Name oxo(oxoferriooxy)iron; oxo(oxoferriooxy)yttrium; oxo(oxoyttriooxy)yttrium
Beilstein/Reaxys No. N/A
SMILES O=[Fe]O[Fe]=O.O=[Fe]O[Fe]=O.O=[Fe]O[Y]=O.O=[Y]O[Y]=O
InchI Identifier InChI=1S/5Fe.12O.3Y
InchI Key UVXIKKWNYGPENJ-UHFFFAOYSA-N
Chemical Formula
Molecular Weight
Standard InchI
Appearance
Melting Point
Boiling Point
Density

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Typical bulk packaging includes palletized plastic 5 gallon/25 kg. pails, fiber and steel drums to 1 ton super sacks in full container (FCL) or truck load (T/L) quantities. Research and sample quantities and hygroscopic, oxidizing or other air sensitive materials may be packaged under argon or vacuum. Shipping documentation includes a Certificate of Analysis and Safety Data Sheet (SDS). Solutions are packaged in polypropylene, plastic or glass jars up to palletized 440 gallon liquid totes, and 36,000 lb. tanker trucks.
A silica nanorotor is trapped by an optical tweezer (red) inside an optical resonator (blue). Cooled, the rotor alignment in the trapping potential approaches its quantum uncertainty limit (white cone).
May 22, 2026 Los Angeles, CA
Each business day American Elements' scientists & engineers post their choice for the most exciting materials science news of the day

See more Iron products. Iron (atomic symbol: Fe, atomic number: 26) is a Block D, Group 8, Period 4 element with an atomic weight of 55.845. The number of electrons in each of Iron's shells is 2, 8, 14, 2 and its electron configuration is [Ar] 3d6 4s2. Iron Bohr ModelThe iron atom has a radius of 126 pm and a Van der Waals radius of 194 pm. Iron was discovered by humans before 5000 BC. In its elemental form, iron has a lustrous grayish metallic appearance. Iron is the fourth most common element in the Earth's crust and the most common element by mass forming the earth as a whole. Iron is rarely found as a free element, since it tends to oxidize easily; it is usually found in minerals such as magnetite, hematite, goethite, limonite, or siderite.Elemental Iron Though pure iron is typically soft, the addition of carbon creates the alloy known as steel, which is significantly stronger.

See more Yttrium products. Yttrium (atomic symbol: Y, atomic number: 39) is a Block D, Group 3, Period 5 element with an atomic weight of 88.90585. Yttrium Bohr ModelThe number of electrons in each of yttrium's shells is [2, 8, 18, 9, 2] and its electron configuration is [Kr] 4d1 5s2. The yttrium atom has a radius of 180 pm and a Van der Waals radius of 219 pm. Yttrium was discovered by Johann Gadolin in 1794 and first isolated by Carl Gustav Mosander in 1840. In its elemental form, Yttrium has a silvery white metallic appearance. Yttrium has the highest thermodynamic affinity for oxygen of any element. Elemental YttriumYttrium is not found in nature as a free element and is almost always found combined with the lanthanides in rare earth minerals. While not part of the rare earth series, it resembles the heavy rare earths which are sometimes referred to as the "yttrics" for this reason. Another unique characteristic derives from its ability to form crystals with useful properties. The name yttrium originated from a Swedish village near Vaxholm called Yttbery where it was discovered.