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Rare earth fluorides are a class of chemical compounds composed of fluoride ions (F-) and rare earth elements. The rare earth elements belong to the lanthanide series of the periodic table, which includes elements from lanthanum (La) to lutetium (Lu), as well as the closely related element yttrium (Y). Uses: Mainly used for processing raw materials of mixed rare earth metals. for non-ferrous metal additives. used in metal alloys. Additional or Alternative Names: Lanthanide fluorides. Appearance: White powder or granules. CAS No. 68188-85-2. Molecular formula: REF3. ECNumber: 269-166-1. Product ID: ACM68188852. Alfa Chemistry ISO 9001:2015 Certified.
2,3-Bis(2,6-diisopropylphenylimino)butane. Uses: 1. ligand used in the preparation of highly active metal catalysts for the polymerization of ethylene (ref 1, m=ni, pd) and olefins (ref 2, m=pd; ref 3, m= hf, zr) ligand for the iron catalyzed polymerization of styrene acrylate monomers ligand for yttrium complex that catalysis the ring-opening polymerization of cyclic esters ligand for rare-earth dichloro and bis(alkyl) complexes for isoprene polymerization ligand for cobalt catalyzed alkene hydroboration ligand for nickel catalyzed alkene hydrosilylation. Additional or Alternative Names: N-(2,6-diisopropylphenyl)-N-{2-[(2,6-diisopropylphenyl)imino]-1-methylpropylidene}amine; N-((E,2E)-2-[(2,6-Diisopropylphenyl)imino]-1-methylpropylidene)-2,6-diisopropylaniline #; TRA0127768; N,N inverted exclamation marka-Bis(2,6-diisopropylphenyl)-2,3-butanediimine; J-400165; AKOS025295710; N2,N3-bis[2,6-di(propan-2-yl)phenyl]butane-2,3-diimine; (N,N'E,N,N'E)-N,N'-(butane-2,3-diylidene)bis(2,6-diisopropylaniline); 74663-77-7; ZINC15230312. Product Category: Heterocyclic Organic Compound. CAS No. 74663-77-7. Molecular formula: C28H40N2. Mole weight: 404.642g/mol. IUPACName: 2-N,3-N-bis[2,6-di(propan-2-yl)phenyl]butane-2,3-diimine. Canonical SMILES: CC(C)C1=C(C(=CC=C1)C(C)C)N=C(C)C(=NC2=C(C=CC=C2C(C)C)C(C)C)C. Product ID: ACM74663777. Alfa Chemistry ISO 9001:2015 Certified.
Arsenazo III
Arsenazo III is a dye useful for detection of micromolar concentrations of ionized Ca 2+. Arsenazo III can be used for determination of thorium, zirconium, uranium and rare earth elements [1] [2]. Uses: Scientific research. Group: Fluorescent dye. CAS No. 1668-00-4. Pack Sizes: 100 mg. Product ID: HY-D0202.
Holmium(III) fluoride. Uses: Dysprosium is most commonly used as in neodymium-iron-boron high strength permanent magnets. while it has one of the highest magnetic moments of any of the rare earths (10.6ub), this has not resulted in an ability to perform on its own as a practical alternative to neodymium compositions. it is however now an essential additive in ndfeb production. it is also used in special ceramic compositions b. Group: Electrolytes. Alternative Names: HoF3; Holmium fluoride (HoF3); holmiumfluoride(hof3); HOLMIUM(III) FLUORIDE; HOLMIUM FLUORIDE; holmium trifluoride; HOLMIUM(III) FLUORIDE, ANHYDROUS, 99.99%; Holmium(III)Fluoride,99.9%. CAS No. 13760-78-6. Molecular formula: 221.93. Mole weight: HoF3.
Indium Gallium Arsenide Powder has a number of important electronic and optical properties and is used in detectors and solar cells. Group: Nano rare-earth materials. Alternative Names: InGaAs; Gallium Indium Arsenide; GaInAs; Indium Gallium Arsenic; InxGa1-xAs. CAS No. 106097-59-0. Molecular formula: 259.45999999999998. Mole weight: InxGa1-xAs. 2N99% IndiumGalliumArsenidePowder|3N99. 9% IndiumGalliumArsenidePowder|4N99. 99% IndiumGalliumArsenidePowder|5N99. 999% IndiumGalliumArsenidePowder.
Lanthanum atomic absorption standard solution. Uses: Lanthanum is the first element in the rare earth or lanthanide series. it is the model for all the other trivalent rare earths. after cerium, it is the second most abundant of the rare earths. lanthanum-rich lanthanide compounds have been used extensively for cracking reactions in fcc catalysts, especially to manufacture high-octane gasoline from heavy crude oil. lanthanum-rich rare earth metals play the important roles in hydrogen storage batteries. it is utilized in green phosphors based on the phosphate (la0.4ce0.45tb0.15)po4;in laser crystals based on the yttrium-lanthanum-fluoride (ylf) composition. lanthanum metal is the very important raw materials in producing hydrogen storage alloys for nimh batteries, and is also used to produce other pure rare earth metals and specialty alloys. small amounts of lanthanum added to steel improves its malleability, resistance to impact, and ductility; small amounts of lanthanum are present in many pool products to remove the phosphates that feed algae. lanthanum metal can be further processed to various shapes of ingots, pieces, wires, foils, slabs, rods, discs and powder. Group: Reference-calibration standards.
Lanthanum(III) hydroxide. Uses: Lanthanum hydroxide, also called lanthanum hydrate, is mainly applied in specialty glass, water treatment and catalyst. various compounds of lanthanum and other rare-earth elements (oxides, chlorides, etc.) are components of various catalysis, such as petroleum cracking catalysts. small amounts of lanthanum added to steel improves its malleability, resistance to impact, and ductility, whereas addition of lanthanum to molybdenum decreases its hardness and sensitivity to temperature variations. small amounts of lanthanum are present in many pool products to remove the phosphates that feed algae. Group: Electrolytes. Alternative Names: AKOS025243344; 14507-19-8; TR-005692; TRA-0193998; YXEUGTSPQFTXTR-UHFFFAOYSA-K; AC1L35UQ; Lanthanum hydroxide (VAN); 39377-54-3. CAS No. 14507-19-8. Product ID: lanthanum(3+); trihydroxide. Molecular formula: 189.926g/mol. Mole weight: La(OH)3;H3LaO3. [OH-].[OH-].[OH-].[La+3]. InChI=1S/La.3H2O/h;3*1H2/q+3;;;/p-3. YXEUGTSPQFTXTR-UHFFFAOYSA-K.
Lutetium. Uses: Because lutetium is difficult to prepare on a large scale, its practical uses are limited. someof its radioisotopes are used as catalysts in the cracking (refining) process of crude oil, whichproduces lighter fractions such as diesel fuel and gasoline. it can also be used as a catalyst tospeed up the reaction in some hydrogenation processes wherein hydrogen is added to vegetableoils to make more solid products. some of its isotopes have been used to determine theage of meteorites. Additional or Alternative Names: Lutetium foil, 0.5mm (0.02in) thick; CHEBI:33382; Lutetium, foil, thickness 0.125 mm, size 50 x 50 mm, tolerance 0.2; Lutetium, powder, 1g, max. particle size 500 micron, 99.9%; lutecio; Lutetium, ingot, 99.9% trace rare earth metals basis; TRA-0206231; Lutetium, lump, 25 mm max. lump size, weight 2 g, purity 99.9%; Lutetium, foil, size 25 mm x 25 mm x 1 mm, 99.9% trace rare earth metals basis; AKOS015902696. Product Category: Nanoparticles & Nanopowders. CAS No. 7439-94-3. Molecular formula: Lu. Mole weight: 174.967g/mol. IUPACName: lutetium. Canonical SMILES: [Lu]. ECNumber: 231-103-0. Product ID: ACM7439943. Alfa Chemistry ISO 9001:2015 Certified.
Mischmetal-nickel alloy
Description General description We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find details here. Application Mischmetal-nickel alloy is a hydrogen storage alloy, which consists of rare earth metals and transition metals. It can be used as an anode material for the formation of nickel-metal hydride batteries. These batteries can further be utilized in hybrid vehicles. Packaging 10 g in glass bottle. Group: Hydrogen storage materials electrode materials. CAS No. 54426-34-5. Mole weight: (Ce,La,Nd,Pr)Ni5. 1S/Co.La.Ni. OPDRIGFSUGVDKR-UHFFFAOYSA-N.
powder, ~40 mesh, 99.5% trace rare earth metals basis. Group: Metals for 3d printing.
Praseodymium
Praseodymium. Uses: Praseodymium's major use is as an alloying agent along with magnesium to produce highstrengthsteel that is used in airplane engines and automobiles parts. notwithstanding its greenish color, another important use of praseodymium is as a yellow pigment to color glassand ceramics. along with several other rare-earths, it is also used to form the electrodes forhigh-intensity arc lamps. it is used to manufacture safety goggles that filter out strong yellow light (used in welding,for example). misch metal uses about 5% pr in the manufacture of cigarette lighter flints. Group: 3d printing materials. Alternative Names: Praseodymium ingot; Praseodymium, lump, 25 mm max. lump size, weight 200 g, purity 99%; Praseodymium, wire reel, 50mm, diameter 1.0mm, hard, 99.9%; Praseodymium, foil, not light tested, 25x25mm, thickness 0.025mm, as rolled, 99%; Praseodymium rod, 6.35mm (0.25in) dia; EINECS 231-120-3; Praseodymium, powder, max. particle size 250 micron, weight 20 g, purity 99.9%; MFCD00011174; Praseodymium, foil, not light tested, 50x50mm, thickness 0.005mm, as rolled, 99%; NKN7EZA750. CAS No. 7440-10-0. Product ID: praseodymium. Molecular formula: 140.908g/mol. Mole weight: Pr. [Pr]. InChI=1S/Pr. PUDIUYLPXJFUGB-UHFFFAOYSA-N.
Praseodymium Acetate
Praseodymium Acetate is used to manufacture color glasses and enamels; when mixed with certain other materials, Praseodymium produces an intense clean yellow color in glass. Component of Didymium glass which is a colorant for welder's goggles, also as important additive of Praseodymium yellow pigments. It can be used to create hHigh-power magnets notable for their strength and durability. It is present in the rare earth mixture whose Fluoride forms the core of carbon arc lHights which are used in the motion picture industry for studio lHighting and projector lHights. Uses: Used to colour glasses and enamels; when mixed with certain other materials, praseodymium produces an intense clean yellow colour in glass. component of didymium glass which is a colourant for welder's goggles, also as important additive of praseodymium yellow pigments. Product Category: Heterocyclic Organic Compound. Appearance: Green crystalline aggregates. CAS No. 1567-96-4. Molecular formula: Pr(O2C2H3)3.xH2O. Mole weight: 318.03(anhy)g/mol. Purity: 0.96. Density: 1.2g/mL. Product ID: ACM1567964. Alfa Chemistry ISO 9001:2015 Certified.
Praseodymium Hydroxide
Much research is being done on its optical properties for use in amplification of telecommunication systems. It can be used to create hHigh-power magnets notable for their strength and durability. It is present in the rare earth mixture whose Fluoride forms the core of carbon arc lHights which are used in the motion picture industry for studio lHighting and projector lHights. Uses: Praseodymium hydrate, used to colour glasses ,enamels and pigments. Product Category: Heterocyclic Organic Compound. Appearance: Green. CAS No. 16469-16-2. Molecular formula: Pr(OH)3.xH2O. Mole weight: 192g/mol. Product ID: ACM16469162. Alfa Chemistry ISO 9001:2015 Certified.
Praseodymium(III) nitrate hexahydrate
Praseodymium(III) nitrate hexahydrate. Uses: Praseodymium nitrate is applied to colour glasses and enamels; when mixed with certain other materials, praseodymium produces an intense clean yellow colour in glass. component of didymium glass which is used to make certain types of welder's and glass blower's goggles, also as important additive of praseodymium yellow pigments. it can be used to create high-power magnets notable for their strength and durability. it is present in the rare earth mixture whose fluoride forms the core of carbon arc lights which are used in the motion picture industry for studio lighting and projector lights. Group: Electrolytesphosphors - phosphor materials. Alternative Names: Praseodymium nitrate bexahydrote. CAS No. 15878-77-0. Product ID: Praseodymium(3+); trinitrate; hexahydrate. Molecular formula: 435.01. Mole weight: H12N3O15Pr. [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. O. O. O. O. O. O. [Pr+3]. InChI=1S/3NO3.6H2O.Pr/c3*2-1(3)4; /h; 6*1H2; /q3*-1; +3. LXXCECZPOWZKLC-UHFFFAOYSA-N. 99%+.
Praseodymium Oxide
Pr6O11 is a chemical compound composed of the rare earth praseodymium and oxygen. Dark brown powder. Water insoluble, soluble in strong acid, hygroscopic. Uses: Alloys; glass; ceramic glaze; magnetics; pigments. Group: Nanoparticlesoptical coatings. CAS No. 12037-29-5. Molecular formula: 1021g/mol. Mole weight: Pr6O11.
Praseodymium Oxide
Pr6O11 is a chemical compound composed of the rare earth praseodymium and oxygen. Dark brown powder. Water insoluble, soluble in strong acid, hygroscopic. Uses: Alloys; glass; ceramic glaze; magnetics; pigments. Group: other nano materials. CAS No. 12037-29-5. Molecular formula: 1021g/mol. Mole weight: Pr6O11.
powder, 99.9% trace rare earth metals basis. Group: Metals for 3d printing.
Strontium Titanate
Strontium Titanate in forms such as wafer, powder, single crystal substrates, and sputtering targets in standard and custom dimensions. Available dopant materials include niobium, barium, nickel, and rare earth metals. Uses: In electronics and electrochemical insulation; in photocatalysis; sputtering target for thin film capacitors; substrate for epitaxial growth of high temperature superconductor thin films. diamond simulant gemstone. Group: other nano materials. Alternative Names: Strontium titanium oxide, Strontium titanium trioxide, Strontium dioxido(oxo)titanium, La and Ni co-doped SrTiO3, Nb:TiO3, LSTN. CAS No. 12060-59-2. Molecular formula: 183.49. Mole weight: SrTiO3. [Sr++].[O-][Ti]([O-])=O. 0.99999000000000005.
Terbium
Terbium. Uses: There are few uses for terbium. however, terbium can be used as an activator for greenphosphor in tv tubes, and some of its compounds are used to produce laser lights. it is alsoused to "dope" (coat) some forms of solid-state instruments, as a stabilizer in fuel cells so thatthey can operate at high temperatures, and as a metal for control rods in nuclear reactors. Additional or Alternative Names: AC1L2N41; Terbium, chips, 99.9% trace rare earth metals basis; Terbium, foil, not light tested, 25x25mm, thickness 0.025mm, as rolled, 99%; Tb; TRA0067342; Terbium foil, 0.127mm (0.005in) thick; Terbium chips; Terbium, powder, 2g, max. particle size 500 micron, 99.9%; AKOS024257645; DTXSID3064691. Product Category: Nanoparticles & Nanopowders. CAS No. 7440-27-9. Molecular formula: Tb. Mole weight: 158.925g/mol. IUPACName: terbium. Canonical SMILES: [Tb]. ECNumber: 231-137-6. Product ID: ACM7440279. Alfa Chemistry ISO 9001:2015 Certified.
Thulium
Thulium. Uses: Thulium products are mainly used in making crystal and lasers. an important application of the thulium in the medicine area, and relatively independent of its high cost, is the production of portable x-ray sources. these sources are available for about one year, as tools in medical and dental diagnosis, as well as to detect defects in mechanical and electronic inaccessible components. this type. Additional or Alternative Names: 69Tm; CHEBI:33380; Thulium, plasma standard solution, Specpure, Tm 10,000g/ml; Thulium, foil, size 25 mm x 25 mm x 1 mm, 99.9% trace rare earth metals basis; EINECS 231-140-2; THULIUM 99.9%; RTR-024036; Thulium pieces; Thulium, wire, 0.1m, diameter 0.6mm, 99%; Thulium, foil, not light tested, 12.5x12.5mm, thickness 0.002mm, as rolled, 99%. Product Category: Nanoparticles & Nanopowders. CAS No. 7440-30-4. Molecular formula: Tm. Mole weight: 168.934g/mol. IUPACName: thulium. Canonical SMILES: [Tm]. ECNumber: 231-140-2. Product ID: ACM7440304. Alfa Chemistry ISO 9001:2015 Certified.
Ytterbium
powder, ?99.9% trace rare earth metals basis. Group: Metals for 3d printing.
powder, ?40 mesh, 99.5% trace rare earth metals basis. Group: Metals for 3d printing.
Yttrium Acetate
Yttrium Acetate is widely applied in electronic ceramics, glass, and electronics. HHigh purity grades are the most important materials for tri-bands Rare Earth phosphors and Yttrium-Iron-Garnets, which are very effective microwave filters. Yttrium compounds are used as a catalyst for ethylene polymerization. Yttrium is used in the production of a large variety of synthetic garnets, and Yttria is used to make Yttrium Iron Garnets, which are very effective microwave filters. Uses: Glass, and electronics. high purity grades are the most important materials for tri-bands rare earth phosphors and yttrium-iron-garnets, which are very effective microwave filters. Product Category: Heterocyclic Organic Compound. Appearance: White Crystal. CAS No. 23363-14-6. Molecular formula: Y(O2C2H3)3.xH2O. Mole weight: 266.03(anhy)g/mol. Density: 2.3g/mL. Product ID: ACM23363146. Alfa Chemistry ISO 9001:2015 Certified.
Yttrium Carbonate is widely applied in electronic ceramics, glass, and electronics. HHigh purity grades are the most important materials for tri-bands Rare Earth phosphors and Yttrium-Iron-Garnets, which are very effective microwave filters. Yttrium Carbonate is a water insoluble Yttrium source that can easily be converted to other Yttrium compounds, such as the Oxide by heating (calcination). Uses: Glass, and electronics. high purity grades are the most important materials for tri-bands rare earth phosphors and yttrium-iron-garnets, which are very effective microwave filters. Group: Electrolytes. Alternative Names: Yttrium(III) carbonate xhydrate. CAS No. 38245-39-5. Product ID: yttrium(3+); tricarbonate. Molecular formula: 357.84. Mole weight: C3O9Y2. C(=O)([O-])[O-]. C(=O)([O-])[O-]. C(=O)([O-])[O-]. [Y+3]. [Y+3]. InChI=1S/3CH2O3.2Y/c3*2-1(3)4; ; /h3*(H2, 2, 3, 4); ; /q; ; ; 2*+3/p-6. QVOIJBIQBYRBCF-UHFFFAOYSA-H. 99%+.
Yttrium Chloride Hexahydrate
Yttrium Chloride is widely applied in electronic ceramics, glass, and phosphors. HHigh purity grades are the most important materials for tri-bands Rare Earth phosphors and Yttrium-Iron-Garnets, which are very effective microwave filters. Yttrium is used in the production of a large variety of synthetic garnets, and Yttria is used to make Yttrium Iron Garnets, which are very effective microwave filters. Uses: Glass, and phosphors. high purity grades are the most important materials for tri-bands rare earth. Group: Electrolytes. Alternative Names: Yttrium(III) chloride 6-hydrate. CAS No. 10025-94-2. Molecular formula: 303.36. Mole weight: YCl3.6H2O. [H]O[H]. [H]O[H]. [H]O[H]. [H]O[H]. [H]O[H]. [H]O[H]. Cl[Y](Cl)Cl. InChI=1S/3ClH.6H2O.Y/h3*1H; 6*1H2; /q; +3/p-3. IINACGXCEZNYTF-UHFFFAOYSA-K. 99%+.
Yttrium Fluoride
Yttrium Fluoride is widely applied in metallurgy, ceramics, glass, and electronics. HHigh purity grades are the most important materials for tri-bands Rare Earth phosphors and , which are very effective microwave filters. Yttrium Fluoride also can be used for the production of metallic Yttrium, thin films, glasses and ceramics. Yttrium is used in the production of a large variety of synthetic garnets, and Yttria is used to make Yttrium Iron Garnets, which are very effective microwave filters. Group: Optical coatings. Alternative Names: YTTRIUM FLUORIDE; YTTRIUM(III) FLUORIDE; yttriumfluoride(yf3); yttriumtrifluoride; Yttrium fluoride 99; YTTRIUM(III) FLUORIDE99.9%; YTTRIUM FLUORIDE, ANHYDROUS, POWDER, 99. 99%; YTTRIUM (III) FLUORIDE, ANHYDROUS, 99.9% (METALS BASIS). CAS No. 13709-49-4. Product ID: trifluoroyttrium. Molecular formula: 146g/mol. Mole weight: YF3. F[Y](F)F. RBORBHYCVONNJH-UHFFFAOYSA-K. 96%.
Yttrium Oxide
Y2O3 is an air-stable, white solid substance. It is a common precursor material for both organic and inorganic compounds. It is a useful material that can be used as a precursor-material, creation of yttrium iron garnets, sputtering targets, hHigh-temperature superconductor yttrium barium copper oxide, various phosphors including phosphors with medicinal applications. Another important application of Y2O3 is the production of Yttria-stabilized zirconium dioxide ceramics. Uses: Color tv;x-ray &other luminescentmaterials;laser crystal;optical glass;ysz ceramics;catalyst;phosphors for lamps, 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. Group: Optical coatings. Alternative Names: Diyttrium trioxide. CAS No. 1314-36-9. Product ID: Oxygen(2-); yttrium(3+). Molecular formula: 225.81. Mole weight: Y2O3. [O-2].[O-2].[O-2].[Y+3].[Y+3]. InChI=1S/3O.2Y/q3*-2;2*+3. RUDFQVOCFDJEEF-UHFFFAOYSA-N. 95%+.
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