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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. Group: Heterocyclic organic compound. 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. 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. Catalog: ACM74663777.
Lanthanum atomic absorption standard solution
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.
Scandium Acetate
Scandium Acetate is applied in optical coating, catalyst, electronic ceramics and laser industry. Acetates are excellent precursors for production of ultra hHigh purity compounds, catalysts, and nanoscale materials. The main application of Scandium by weHight is in Scandium-Aluminium alloys for minor aerospace industry components. Dentists use Erbium, Chromium: Yttrium-Scandium-Gallium Garnet (Er,Cr:YSGG) lasers for cavity preparation and in endodontics. Uses: Catalyst, electronic ceramics and laser industry. Group: Heterocyclic organic compound. CAS No. 3804-23-7. Molecular formula: Sc(O2C2H3)3.xH2O. Mole weight: 222g/mol. Appearance: White Crystal. Catalog: ACM3804237.
Catalyst used for an asymmetric Michael addition. Catalyst used for an asymmetric Michael addition of 1,3-dicarbonyls to enones. Catalyst used for the asymmetric aza-Michael addition of methylhydroxylamine to chalcone derivatives. Catalyst used for the asymmetric direct aldol reaction of acetophenone and pivaldehyde. Group: Yttriumcatalysts. CAS No. 1611526-73-8. Molecular formula: C75H78N9O6Y. Mole weight: 1290.39. Appearance: Orange powder. Catalog: ACM1611526738-1.
Gadolinium Nitrate
Gadolinium Yttrium Garnet (Gd:Y3Al5O12); it has microwave applications and is used in fabrication of various optical components and as substrate material for magneto-optical films. Uses: Gadolinium nitrate is used for making optical glass and dopant for gadolinium yttrium garnets which have microwave applications, also applied in special catalyst and phosphors. gadolinium nitrate is also used for making green phosphors for color tv tubes. it is used in many quality assurance applications, such as line sources and calibration phantoms. Group: Heterocyclic organic compound. Alternative Names: GADOLINIUM NITRATE;GADOLINIUM NITRATE. CAS No. 94219-55-3. Molecular formula: Gd(NO3)3.xH2O. Mole weight: 343g/mol. Appearance: White crystalline. Density: 2.3g/mL. Catalog: ACM94219553.
Holmium(III) nitrate pentahydrate
Holmium(III) nitrate pentahydrate. Uses: Holmium nitrate has specialized uses in ceramics, glass, phosphors and metal halide lamp, and catalyst. it is also used in yttrium-iron-garnet (yig) and yttrium-lanthanum-fluoride (ylf) solid-state lasers found in microwave equipment (which are in turn found in a variety of medical and dental settings). Group: Electrolytes. Alternative Names: Holmium nitrate hydrate. CAS No. 14483-18-2. Product ID: Holmium(3+); trinitrate; pentahydrate. Molecular formula: 441.02. Mole weight: H10HoN3O14. [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. O. O. O. O. O. [Ho+3]. InChI=1S/Ho.3NO3.5H2O/c; 3*2-1(3)4; /h; 5*1H2/q+3; 3*-1. BJUGWWDCFYEYOA-UHFFFAOYSA-N. 99%+.
Holmium(III) nitrate pentahydrate
Holmium Nitrate has specialized uses in ceramics, glass, phosphors and metal halide lamp, and catalyst. It is also used in Yttrium-Iron-Garnet (YIG) and Yttrium-Lanthanum-Fluoride (YLF) solid-state lasers found in microwave equipment (which are in turn found in a variety of medical and dental settings). Group: Metal & ceramic materials. Alternative Names: Holmium nitrate hydrate. CAS No. 14483-18-2. Molecular formula: H10HoN3O14. Mole weight: 441.02. Appearance: Orange crystal. Purity: 99%+. IUPACName: Holmium(3+);trinitrate;pentahydrate. Canonical SMILES: [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. [N+](=O)([O-])[O-]. O. O. O. O. O. [Ho+3]. Catalog: ACM14483182.
Lithium tris(S-(-)-1,1'-binaphthyl-2,2'-diolato)yttrate(III) tetrahydrofuran adduct, min. 97%
Catalyst used for the asymmetric cyano-ethoxycarbonylation reaction of aldehydes. Catalyst used for the efficient, two-step conversion of α,β-unsaturated aldehydes to optically active γ-oxy-α, β-unsaturated nitriles. Catalyst used for the asymmetric 1,4-addition of O-alkylhydroxyamine to enones. Group: Heterocyclic organic compound. Alternative Names: 500995-67-5;Lithium tris(S-(-)-1,1'-binaphthyl-2,2'-diolato)yttrate(III) tetrahydrofuran adduct;MFCD07781990;SC10896;Lithium tris(s-(-)-1,1'-binaphthyl-2,2'-diolato)yttrate(iII);LITHIUM TRIS(S-(-)-1,1'-BINAPHTHYL-2,2'-DIOLATO)YTTRATE (III). CAS No. 500995-67-5. Molecular formula: C60H39Li3O6Y. Mole weight: 965.692g/mol. IUPACName: trilithium;1-(2-hydroxynaphthalen-1-yl)naphthalen-2-olate;yttrium. Canonical SMILES: [Li+]. [Li+]. [Li+]. C1=CC=C2C (=C1)C=CC (=C2C3=C (C=CC4=CC=CC=C43)[O-])O. C1=CC=C2C (=C1)C=CC (=C2C3=C (C=CC4=CC=CC=C43)[O-])O. C1=CC=C2C (=C1)C=CC (=C2C3=C (C=CC4=CC=CC=C43)[O-])O. [Y]. Catalog: ACM500995675.
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. Group: Heterocyclic organic compound. CAS No. 23363-14-6. Molecular formula: Y(O2C2H3)3.xH2O. Mole weight: 266.03(anhy)g/mol. Appearance: White Crystal. Density: 2.3g/mL. Catalog: ACM23363146.
Yttrium(III) tris(isopropoxide)
Yttrium(III) tris(isopropoxide). Uses: Catalyst for: stereoselective conjugate addition reactions ring-opening polymerizations generation of reactive enolates by enantioselective protonation reactions cyano-phosphorylation of enone and allylic substitution synthesis of nanocompositesreactant for the preparation of flat hfo2 films. Group: Vapor deposition precursors. Alternative Names: 2-Propanol yttrium(III) salt, Isopropyl alcohol yttrium(III) salt, Tris(isopropoxy) yttrium(III). CAS No. 2172-12-5. Pack Sizes: 500 mg in glass bottle. Product ID: propan-2-olate; yttrium(3+). Molecular formula: 266.17. Mole weight: Y(OCH(CH3)2)3. CC(C)O[Y](OC(C)C)OC(C)C. 1S/3C3H7O.Y/c3*1-3(2)4;/h3*3H, 1-2H3;/q3*-1;+3, PYLIDHFYDYRZSC-UHFFFAOYSA-N. PYLIDHFYDYRZSC-UHFFFAOYSA-N.
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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