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Lithium Nickel Cobalt Aluminum Oxide (NCA) is a highly thermally stable cathode material used lithium-ion batteries. Doping the lithium nickel cobalt oxide with aluminum both stabilizes its thermal and charge transfer resistance. Group: Battery materials. Alternative Names: Lithium nickel cobalt aluminium oxide, LiNi0.8Co0.15Al0.05O2, NCA, Li(NCA)O2, Lithium nickel cobalt aluminum dioxide, Lithium nickel cobalt oxide, doped with aluminum, lithium mixed metal oxide, Aluminum doped Lithium nickel cobalt oxide (LNCO), LiNiCoAlO2, CAS 207803-51-8, 177997-13-6. CAS No. 193214-24-3. Molecular formula: 183.54(LiNiCoAlO2); variesbycomposition. Mole weight: LiNiCoAlO2. >98%.
Lithiumnickelcobaltoxide
Lithiumnickelcobaltoxide. Uses: Designed for use in research and industrial production. Additional or Alternative Names: Cathodepowdersnc8020;electronicgrade;Lithiumnickelcobaltoxide;Cobalt lithium nickel oxide (Co0.2LiNi0.8O2);LNCO. Product Category: Renewable & Alternative Energy. CAS No. 113066-89-0. Molecular formula: CoLiNiO. Mole weight: 140.567. Purity: 0.96. Product ID: ACM113066890. Alfa Chemistry ISO 9001:2015 Certified.
Lithium Nickel Cobalt Oxide (LNCO) is a two-dimensional positive electrode material used in the newest generarion of lithium-ion batteries. LNCO is highly thermally stable and exhibits high cell voltage and intercalaction reversibility. Lithium Nickel Cobalt Oxide is generally immediately available in most volumes. Group: Electrode materials lithium-ion batteriesbattery materials. Alternative Names: LNCO, LiNiCoO, LiNiCoO2, LiNi1-xCoxO2. CAS No. 113066-89-0. Molecular formula: 365.38. Mole weight: LiNi1-xCoxO2. InChI=1S/Co.Li.Ni.O/q+2;;;-2. FDHIEYQBJRNWDC-UHFFFAOYSA-N. 99%|99.9%|99.99%|99.999%.
Lithium Nickel Dioxide (LNO) is a cathode material for use in the newest generarion of lithium-ion batteries and is available in both submicron and nanopowder forms. Group: Electrode materials lithium-ion batteriesnanoparticlesbattery materials. Alternative Names: Lithium nickel oxide, Lithium nickelate, lithium oxido(oxo)nickel, LNO, CAS 12325-84-7. CAS No. 12031-65-1. Molecular formula: 97.63. Mole weight: LiNO2. InChI=1S/Li.Ni.2O/q+1;;;-1. VROAXDSNYPAOBJ-UHFFFAOYSA-N. 99%|99.9%|99.99%|99.999%.
Lithium Nickel Manganese Cobalt Oxide (NMC, or LiNiMnCo) is a highly thermally stable electrode material used in the newest generation of rechargeable lithium-ion batteries. Group: Battery materials. Alternative Names: NMC, NCM, LiNiMnCo, Li[NiMnCo]O2, LiNi0.33Mn0.33Co0.33O2, CAS 182442-95-1, EC 695-690-9, Cobalt lithium manganese nickel oxide, lini0.8co0.1mn0.1o2, linicomno2, NMC333, NMC 333, NMC 532, NMC 622, NMC 811. CAS No. 346417-97-8. Molecular formula: Variesbycomposition. Mole weight: LiNixMnyCozO2. 99%|99.9%|99.99%|99.999%.
Lithium Nickel Manganese Cobalt Oxide
Lithium Nickel Manganese Cobalt Oxide (NMC, or LiNiMnCo) is a highly thermally stable electrode material used in the newest generation of rechargeable lithium-ion batteries. Group: Electrode materials lithium-ion batteriesbattery materials. Alternative Names: NMC, NCM, LiNiMnCo, Li[NiMnCo]O2, LiNi0.33Mn0.33Co0.33O2, CAS 182442-95-1, EC 695-690-9, Cobalt lithium manganese nickel oxide, lini0.8co0.1mn0.1o2, linicomno2, NMC333, NMC 333, NMC 532, NMC 622, NMC 811. CAS No. 346417-97-8. Molecular formula: Variesbycomposition. Mole weight: LiNixMnyCozO2. 99%|99.9%|99.99%|99.999%.
Lithium nickel oxide(linio2)
Lithium nickel oxide(linio2). Uses: Designed for use in research and industrial production. Additional or Alternative Names: Lithium nickel oxide (LiNiO2);LITHIATEDNICKELOXIDE;Lithium nickelate;Lithium nickel dioxide;LNO. Product Category: Renewable & Alternative Energy. CAS No. 12031-65-1. Product ID: ACM12031651-1. Alfa Chemistry ISO 9001:2015 Certified.
Nickel cobalt oxide
nanopowder, <150 nm particle size (BET), 99% trace metals basis. Group: Nanoparticles: oxides, nitrides, and other ceramics.
This prokaryotic enzyme catalyses the reversible reduction of CO2 to CO. The electrons are transferred to redox proteins such as ferredoxin. In purple sulfur bacteria and methanogenic archaea it catalyses the oxidation of CO to CO2, which is incorporated by the Calvin-Benson-Basham cycle or released, respectively. In acetogenic and sulfate-reducing microbes it catalyses the reduction of CO2 to CO, which is incorporated into acetyl CoA by EC 2.3.1.169, CO-methylating acetyl CoA synthase, with which the enzyme forms a tight complex in those organisms. The enzyme contains five metal clusters per homodimeric enzyme: two nickel-iron-sulfur clusters called the C-Clusters, one [...-4S] clusters exist, presumably as part of the electron transfer chain. In purple sulfur bacteria the enzyme forms complexes with the Ni-Fe-S protein EC 1.12.7.2, ferredoxin hydrogenase, which catalyse the overall reaction: CO + H2O = CO2 + H2. cf. EC 1.2.5.3, aerobic carbon monoxide dehydrogenase. Group: Enzymes. Synonyms: Ni-CODH; carbon-monoxide dehydrogenase (ferredoxin). Enzyme Commission Number: EC 1.2.7.4. Storage: Store it at +4 ?C for short term. For long term storage, store it at -20 ?C?-80 ?C. Form: Liquid or lyophilized powder. EXWM-1227; anaerobic carbon-monoxide dehydrogenase; EC 1.2.7.4; Ni-CODH; carbon-monoxide dehydrogenase (ferredoxin). Cat No: EXWM-1227.
Bis[η-(2,5-norbornadiene)]rhodium(I) Tetrafluoroborate. Uses: Bis{p,p'-1,5-diphenyl-3,7-bis[(4-hydrogenphosphonate)phenyl]-1,5,3,7-diazadiphosphocine} nickel(II) bromide (hydrogen bromide adduct) can be used as synthetic nickel catalyst used for photocatalytic reduction of aqueous protons to hydrogen and catalyst containing phosphonate anchor groups for immobilation on metal oxide semiconductor surfaces, enabling light-driven hydrogen evolution. Additional or Alternative Names: 36620-11-8; Bis(norbornadiene)rhodium(I) tetrafluoroborate; [rh(nbd)2]bf4; SC-49716; Bis(bicyclo[2.2.1]hepta-2,5-diene)rhodium tetrafluoroborate; ANW-41403; MFCD00671775; Bis(norbornadiene)(tetrafluoroborato)rhodium; bis(norbomadiene)rhodium (I) tetrafluoroborate; Bis(norbornadiene)rhodium (I) tetrafluoroborate. Product Category: Rhodium series of catalysts. CAS No. 36620-11-8. Molecular formula: C14H16BF4Rh-. Mole weight: 373.991g/mol. IUPACName: bicyclo[2.2.1]hepta-2,5-diene;rhodium;tetrafluoroborate. Canonical SMILES: [B-](F)(F)(F)F.C1C2C=CC1C=C2.C1C2C=CC1C=C2.[Rh]. Product ID: ACM36620118. Alfa Chemistry ISO 9001:2015 Certified.
Lanthanum Nickelate Nanopowder is generally immediately available in most volumes, including bulk quantities. Group: Electrode materials solid oxide fuel cell materials. Alternative Names: LaNO, Lanthanum nickel oxide, Nickel(2+) bis[oxido(oxo)lanthanum], Lanthanum, olatooxo-, nickel(2+) salt (2:1). CAS No. 12031-41-3. Product ID: hydroxy(oxo)lanthanum; nickel. Molecular formula: 400.5. Mole weight: La2NiO4. O[La]=O.O[La]=O.[Ni]. InChI=1S/2La.Ni.4O. VJMGRMCCSVDPHO-UHFFFAOYSA-N. 99%|99.9%|99.99%|99.999%.
Lanthanum Nickelate Nanoparticles / Nanopowder
Lanthanum Nickelate Nanoparticles / Nanopowder. Uses: Lanthanum nickelate nanopowder is generally immediately available in most volumes, including bulk quantities. Additional or Alternative Names: Lanthanum nickel oxide. Product Category: Nanoparticles & Nanopowders. Appearance: nanopowder. CAS No. 12031-41-3. Molecular formula: La2NiO4. Mole weight: 401g/mol. Purity: 99%, 99.9%, 99.99%, 99.999%. Product ID: ACM12031413-1. Alfa Chemistry ISO 9001:2015 Certified.
Lanthanum Nickelate, Strontium doped
Lanthanum Nickelate, Strontium Doped Nanopowder is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. Group: Electrode materials solid oxide fuel cell materials. Alternative Names: LaSNO, Lanthanum nickel strontium oxide, (La,Sr)2NiO4. Mole weight: La(2-x)SrxNiO4. 99%|99.9%|99.99%|99.999%.