Y2O3 2-5μM Ysz Yttria Stabilized Zirconia Powder

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Yttrium oxide also known as yttria is Y2O3 use in many special applications


Yttria


Primary Particle Size (d50): 2-5μm


Granularity: < 100 nm


Purity:99.99% min.


Description:Yttrium(III) oxide, also known as yttria, It is an air-stable, white solid substance.


Formula:Y2O3


CAS No. :1314-36-9


EC No. :215-233-5


Molecular Weight:255.81


Density:5.01 g/cm3


Melting Point:4,397°F (2,425°C)


Boiling Point: 7,772°F (4,300°C)


Appearance:White powder


Typical Application:
Sintering aid for SiC, Si3N4 and AlN
Stabilizer for zirconia - e.g. YSZ coating (TBCs); YSZ electrolytes for solid oxide fuel cells(SOFC)
Catalyst carrier
Luminescent materials (phosphors)
Constituent of high-temperature superalloys and ODS materials
Metallurgical and Electronic materials

thermal spraying


Definition of yttrium

a metallic element usually included in the rare-earth group that occurs usually with other rare earth elements in minerals and is used especially in phosphors, YAG lasers, and superalloys

Phosphors

Yttria is widely used to make Eu:YVO4 and Eu:Y2O3 phosphors that give the red color in color TV picture tubes.

Yttria lasers

Y2O3 is a prospective solid-state laser material. In particular, lasers with ytterbium as dopant allow the efficient operation both in continuous operation[5] and in pulsed regimes.At high concentration of excitations (of order of 1%) and poor cooling, the quenching of emission at laser frequency and avalanche broadband emission takes place. (Yttria-based lasers are not to be confused with YAG lasers using yttrium aluminum garnet, a widely used crystal host for rare earth laser dopants).

Gas Lighting

The original use of the mineral yttria and the purpose of its extraction from mineral sources was as part of the process of making gas mantles and other products for turning the flames of artificially-produced gases (initially hydrogen, later coal gas, paraffin, or other products) into human-visible light. This use is almost obsolete - thorium and cerium oxides are larger components of such products these days.

Dental ceramics

Yttrium oxide is used to stabilize the Zirconia in late-generation porcelain-free metal-free dental ceramics. This is a very hard ceramic used as a strong base material in some full ceramic restorations.[8] The zirconia used in dentistry is zirconium oxide which has been stabilized with the addition of yttrium oxide. The full name of zirconia used in dentistry is "yttria-stabilized zirconia" or YSZ.

Microwave filters

Yttrium oxide is also used to make yttrium iron garnets, which are very effective microwave filters.

Superconductors

Y2O3 is used to make the high temperature superconductor YBa2Cu3O7, known as "1-2-3" to indicate the ratio of the metal constituents:
2 Y2O3 + 8 BaO + 12 CuO + O2 → 4 YBa2Cu3O7
This synthesis is typically conducted at 800 °C.

Inorganic synthesis
Yttrium oxide is an important starting point for inorganic compounds. For organometallic chemistry it is converted to YCl3 in a reaction with concentrated hydrochloric acid and ammonium chloride.

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Y2O3 2-5μM Ysz Yttria Stabilized Zirconia Powder

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