Yttrium oxide
- Iupac Name:oxygen(2-);yttrium(3+)
- CAS No.: 1314-36-9
- Molecular Weight:225.8099
- Modify Date.: 2022-11-05 21:11
- Introduction:
Yttrium oxide, with the chemical formula Y2O3 and CAS registry number 1314-36-9, is a compound known for its role as a rare earth oxide. This white solid, also referred to as yttria, is characterized by its high melting point and excellent thermal stability. Yttrium oxide is commonly used as a component in phosphors, ceramics, and glass, where it imparts desirable properties such as high refractive index and low thermal expansion. It is also used as a catalyst in various chemical reactions and as a dopant in materials for solid-state electronics. Yttrium oxide has been studied for its potential applications in fuel cells, lasers, and superconductors. It is an important compound in the field of materials science and technology, contributing to the development of advanced materials with unique properties.
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1. Names and Identifiers
- 1.1 Name
- Yttrium oxide
- 1.2 Synonyms
EINECS 215-233-5 MFCD00011473 Y2O3 A YTTRIUMOXIDE GRADE A - A PRODUCT OF H.C. STARCK Yttrium(III) Oxide Yttriumoxid YTTRIUMOXIDE,POWDER YTTRIUMOXIDES
- 1.3 CAS No.
- 1314-36-9
- 1.4 CID
- 159374
- 1.5 EINECS(EC#)
- 215-233-5
- 1.6 Molecular Formula
- O3Y2 (isomer)
- 1.7 Inchi
- InChI=1S/3O.2Y/q3*-2;2*+3
- 1.8 InChIkey
- RUDFQVOCFDJEEF-UHFFFAOYSA-N
- 1.9 Canonical Smiles
- [O-2].[O-2].[O-2].[Y+3].[Y+3]
- 1.10 Isomers Smiles
- [O-2].[O-2].[O-2].[Y+3].[Y+3]
2. Properties
- 2.1 Density
- 5.01
- 2.1 Melting point
- 2410℃
- 2.1 Boiling point
- 81-83?°C
- 2.1 Flash Point
- °C
- 2.1 Precise Quality
- 225.79600
- 2.1 PSA
- 43.37000
- 2.1 logP
- -0.30600
- 2.1 Appearance
- white powder
- 2.2 Storage
- Ambient temperatures.
- 2.3 Chemical Properties
- white powder(s) or sintered tablets and pieces of 99.9% purity; bcc; readily absorbs atmospheric CO2; enthalpy of fusion 105.00 kJ/mol; used in crucible form for experimental, proprietary melting, also sintered pieces used as evaporation material for hard film dielectric coating and thin film capacitors, and as 99.999%, 99.99%, 99.9% pure sputtering target for preparing hard films, dielectric coatings, and thin film capacitor [CER91] [MER06] [CRC10]
- 2.4 Physical Properties
- White powder; body-centered cubic structure; density 5.03 g/cm3; melts at 2,436°C; insoluble in water; soluble in dilute acids.
- 2.5 Color/Form
- White
- 2.6 PH
- 10±1
- 2.7 Water Solubility
- Insoluble
- 2.8 StorageTemp
- Storage temperature: no restrictions.
3. Use and Manufacturing
- 3.1 Usage
- Yttrium Oxide, also called Yttria, high purity Yttrium Oxides are the most important materials for tri-bands Rare Earth phosphors which give the red colour in colour television & computer tubes. In optical industry, the Yttrium Oxide is used to produce Yttrium-Iron-Garnets, which are very effective microwave filters. Low purity of Yttrium Oxide are widely applied in electronic ceramics. It is widely used to make Eu:YVO4 and Eu:Y2O3 phosphors that give the red color in color TV picture tubes.Also, it is used in gas mantles and acetylene lights. Other uses are in yttriumiron garnets for microwave filters in lasers, and as a stabilizer for high temperature in refractories.
4. Safety and Handling
- 4.1 Symbol
- GHS07
- 4.1 Hazard Codes
- Xi
- 4.1 Signal Word
- Warning
- 4.1 Risk Statements
- R36/37/38
- 4.1 Safety Statements
- S26;S37/39
- 4.1 Hazard Class
- 2.1
- 4.1 Hazard Declaration
- H315-H335
- 4.1 RIDADR
- UN1950
- 4.1 Safety Profile
- A poison by intraperitoneal route. See alsoYTTRIUM and RARE EARTHS.
- 4.2 Caution Statement
- P261
- 4.2 WGK Germany
- 1
- 4.2 RTECS
- ZG3850000
- 4.2 Sensitive
- Air Sensitive
5. MSDS
2.Hazard identification
2.1 Classification of the substance or mixture
Not classified.
2.2 GHS label elements, including precautionary statements
Pictogram(s) | No symbol. |
Signal word | No signal word. |
Hazard statement(s) | none |
Precautionary statement(s) | |
Prevention | none |
Response | none |
Storage | none |
Disposal | none |
2.3 Other hazards which do not result in classification
none
6. Other Information
- 6.0 Merck
- 14,10107
- 6.1 Physical Properties
- White powder; body-centered cubic structure; density 5.03 g/cm3; melts at 2,436°C; insoluble in water; soluble in dilute acids.
- 6.2 Uses
- Yttrium Oxide, also called Yttria, high purity Yttrium Oxides are the most important materials for tri-bands Rare Earth phosphors which give the red colour in colour television & computer tubes. In optical industry, the Yttrium Oxide is used to produce Yttrium-Iron-Garnets, which are very effective microwave filters. Low purity of Yttrium Oxide are widely applied in electronic ceramics. It is widely used to make Eu:YVO4 and Eu:Y2O3 phosphors that give the red color in color TV picture tubes.
Also, it is used in gas mantles and acetylene lights. Other uses are in yttriumiron garnets for microwave filters in lasers, and as a stabilizer for high temperature in refractories.
- 6.3 Preparation
- Yttrium oxide is produced as an intermediate in recovery of yttrium from xenotime and monazite (See Yttrium, Recovery). The oxide is produced after separation of rare earth sulfates obtained from digesting the mineral with sulfuric acid on a cation exchange bed, precipitating yttrium fraction as oxalate, and igniting the oxalate at 750°C.
Yttrium oxide also may be obtained by thermal decomposition of yttrium nitrate.
- 6.4 Chemical Properties
- white powder(s) or sintered tablets and pieces of 99.9% purity; bcc; readily absorbs atmospheric CO2; enthalpy of fusion 105.00 kJ/mol; used in crucible form for experimental, proprietary melting, also sintered pieces used as evaporation material for hard film dielectric coating and thin film capacitors, and as 99.999%, 99.99%, 99.9% pure sputtering target for preparing hard films, dielectric coatings, and thin film capacitor [CER91] [MER06] [CRC10]
- 6.5 Safety Profile
- A poison by intraperitoneal route. See also YTTRIUM and RARE EARTHS.
- 6.6 Diluting uranium oxide for nuclear fuel rods
- Diluting agent/ Yttrium oxide can form a solid solution with uranium oxide
- 6.7 Preparation of permanent magnets
- Additive
- 6.8 Prospective solid-state laser material
- Dopant / lasers with ytterbium allow the efficient operation both in continuous operation and in pulsed regimes
- 6.9 Making Yttrium iron garnets for powerful microwave filters
- Raw material/source of Yttrium
- 6.10 Ultrafast sensors used in g-ray and x-rays
- Additive
- 6.11 Paints and plastics
- Additive/decreases UV degradation
- 6.12 Usage
- Yttriium(III) oxide is used to make phosphors for color TV tubes, yttrium iron garnets for use as microwave filters, high temperature superconductors, as a mineralizing agent for the formation of spinel and as a stabilizer for high-temperature service materials. It is presurcor for important inorganic compounds. It is a potential solid-state laser material which allows the efficient operation both in continuous operation and in pulsed regimes.
- 6.13 Usage
- Yttrium oxide is an excellent mineralizing agent for spinel formation. Yttrium oxide is used as a common starting material for both materials science as well as inorganic compounds. Provides easy application of uniform, thin, protective high temperature Yttrium Oxide coatings. Yttrium Oxide is used to produce Yttrium-Iron-Garnets, which are very effective microwave filters. Low purity of Yttrium Oxide are widely applied in electronic ceramics. Yttrium Oxide is also used to make Yttrium-Iron-Garnets, which are very effective microwave filters.
- 6.14 Usage
- Sintered pellets suitable for vacuum depositionYttriium(III) oxide is used to make phosphors for color TV tubes, yttrium iron garnets for use as microwave filters, high temperature superconductors, as a mineralizing agent for the formation of spinel and as a stabilizer for high-temperature service materials. It is a precursor for important inorganic compounds. It is a potential solid-state laser material which allows the efficient operation both in continuous operation and in pulsed regimes.
7. Computational chemical data
- Molecular Weight: 225.8099g/mol
- Molecular Formula: O3Y2
- Compound Is Canonicalized: True
- XLogP3-AA: null
- Exact Mass: 225.796420
- Monoisotopic Mass: 225.796420
- Complexity: 0
- Rotatable Bond Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 3
- Topological Polar Surface Area: 3
- Heavy Atom Count: 5
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count: 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- Isotope Atom Count: 0
- Covalently-Bonded Unit Count: 5
- CACTVS Substructure Key Fingerprint: AAADcQAAMAAAAAAAAgAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA==
8. Question & Answer
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General Description Yttrium oxide plays a crucial role in erbium-doped fiber lasers as a saturable absorber, enhancing laser efficiency and stability. Its optical nonlinearity enables the generation o..
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Yttrium oxide, with the chemical formula Y2O3, displays different crystal structures under varying conditions. The most common and stable form is the cubic phase, also known as C-type or C-Y2O3, chara..
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Yttrium oxide is a white powder that is insoluble in water but soluble in acids. It has a large specific surface area, and ultrafine Yttrium oxide is widely used in the production of laser materials, ..
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Rare earths are an extremely important strategic resource and play an irreplaceable role in industrial production. Automotive glass, nuclear magnetic resonance, optical fiber, LCD screens, etc. are al..
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