American Elements
Niobium Oxide Sputtering Target
Nb2O5
1313-96-8
Product
Product Code
Order or Specifications
99% Niobium Oxide Sputtering Target
NB-OX-02-ST
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99.9% Niobium Oxide Sputtering Target
NB-OX-03-ST
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99.99% Niobium Oxide Sputtering Target
NB-OX-04-ST
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99.999% Niobium Oxide Sputtering Target
NB-OX-05-ST
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American Elements specializes in producing high purity Niobium oxide sputtering targets with the highest possible density and smallest possible average grain sizes for use in semiconductor, chemical vapor deposition (CVD) and physical vapor deposition (PVD) display and optical applications. Our standard Sputtering Targets for thin film are available monoblock or bonded with dimensions and configurations up to 820 mm with hole drill locations and threading, beveling, grooves and backing designed to work with both older sputtering devises as well as the latest process equipment, such as large area coating for solar energy or fuel cells and flip-chip applications. Research sized targets are also produced as well as custom sizes and alloys. All targets are analyzed using best demonstrated techniques including X-Ray Fluorescence (XRF), Glow Discharge Mass Spectrometry (GDMS), and Induction Plasma Spectrometry (ICP). "Sputtering" allows for thin film deposition of an ultra high purity sputtering metallic or oxide material onto another solid substrate by the controlled removal and conversion of the target material into a directed gaseous/plasma phase through ionic bombardment. We can also provide targets outside this range in addition to just about any size rectangular, annular, or oval target. Materials are produced using crystallization, solid state and other ultra high purification processes such as sublimation. American Elements specializes in producing custom compositions for commercial and research applications and for new proprietary technologies. American Elements also casts any of the rare earth metals and most other advanced materials into rod, bar or plate form, as well as other machined shapes and through other processes such as nanoparticles (See also application discussion at Nanotechnology Information and at Quantum Dots) and in the form of solutions and organometallics. We also produce Niobium Oxide as pellets, pieces, powder, and tablets. Oxide compounds are not conductive to electricity. See research below. Other shapes are available by request.

Niobium is a Block D, Group 5, Period 5 element. The electronic configuration is [Kr] 4d4 5s1. In its elemental form niobium's CAS number is 7440-03-1. The niobium atom has a radius of 142.9.pm and it's Van der Waals radius is 200.pm.

Formula CAS No. Appearance Molecular Weight
Nb2O5 1313-96-8 White Powder 265.81
CATALOGUE PRODUIT Submicroniques et nanopoudres Tolling Ultra haute pureté Sputtering Public Crystal Growth Rod, Plate, poudre, etc.
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Recent Research & Development for Niobium Oxide

  • Stoichiometry and valence measurements of niobium oxides using electron energy-loss spectroscopy.
    J Microsc. 2006 Dec;224(3):233-241.

  • Two organically templated niobium and zinconiobium fluorophosphates: low temperature hydrothermal syntheses of NbOF(PO4)2(C2H10N2)2 and Zn3(NbOF)(PO4)4(C2H10N2)2.
    Inorg Chem. 2007 Jan 8;46(1):231-7.

  • Vertically aligned carbon-nanotube arrays showing schottky behavior at room temperature.
    Small. 2005 May;1(5):553-9.

  • Phase transformations in bulk nanostructured potassium niobiosilicate glasses.
    J Phys Chem B Condens Matter Mater Surf Interfaces Biophys. 2006 Dec 28;110(51):25740-5.

  • Activation of atmospheric nitrogen and azobenzene N=N bond cleavage by a transient Nb(III) complex.
    Inorg Chem. 2006 Dec 25;45(26):10712-21.

  • Enantioselective Desymmetrization of meso Epoxides with Anilines Catalyzed by a Niobium Complex of a Chiral Multidentate Binol Derivative.
    Angew Chem Int Ed Engl. 2006 Dec 18; [Epub ahead of print] No abstract available.

  • Core structure of eremophilanes and bakkanes through niobium catalyzed Diels-Alder reaction: synthesis of (+/-)-bakkenolide A.
    J Org Chem. 2006 Dec 22;71(26):9880-3.

  • C-H bond activation of arenes by a transient eta2-cyclopropene niobium complex.
    J Am Chem Soc. 2006 Dec 20;128(50):15962-3. No abstract available.

  • On the performance of Fe and Fe,F doped Ti-Pt/PbO(2) electrodes in the electrooxidation of the Blue Reactive 19 dye in simulated textile wastewater.
    Chemosphere. 2007 Feb;66(11):2035-43. Epub 2006 Nov 30.

  • Formation and distribution of neutral vanadium, niobium, and tantalum oxide clusters: single photon ionization at 26.5 eV.
    J Chem Phys. 2006 Oct 28;125(16):164318.

 

 

 

 

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