American Elements
Palladium Foil
Pd
7440-05-3
Product
Product Code
Order or Specifications
99% Palladium Foil
PD-M-02F
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99.5% Palladium Foil
PD-M-025F
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99.9% Palladium Foil
PD-M-03F
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99.95% Palladium Foil
PD-M-035F
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99.99% Palladium Foil
PD-M-04F
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99.999% Palladium Foil
PD-M-05F
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See research below. American Elements specializes in producing Palladium as rolled foils and sheets in various thicknesses and sizes. Most foils are produced from cast ingots for use in coating and thin film Chemical Vapor Deposition (CVD) and Physical Vapor Deposition (PVD) processes including Thermal and Electron Beam (E-Beam) Evaporation, Low Temperature Organic Evaporation, Atomic Layer Deposition (ALD), Organometallic and Chemical Vapor Deposition (MOCVD) for specific applications such as fuel cells and solar energy. Thickness can range from 0.003" to approximately 2mm for all metals. Some metals can also be rolled down as thin as 0.001". Piece sizes are available up to approximately 7" maximum width. Maximum lengths of about 20" can be obtained with a nominal thickness between about 0.005" and 0.020". 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 Palladium as rods, powder and plates. Other shapes are available by request.

Palladium is a Block D, Group 10, Period 5 element. The electronic configuration is [Kr] 4d10. In its elemental form palladium's CAS number is 7440-05-3. The palladium atom has a radius of 137.6.pm and it's Van der Waals radius is 163.pm. Palladium is a member of the platinum group of metals. It is an excellent hydrogenation and dehydrogenation catalyst and available in many Organo-metallic forms for this purpose. It is alloyed with gold, silver, iridium and other platinum group elements and used in jewelry. The metal is used in dentistry, watch making, and in making surgical instruments and electrical contacts.

Formula CAS No. Appearance Molecular Weight
Pd 7440-05-3 Gray Powder 106.42
CATALOGUE PRODUIT Submicroniques et nanopoudres Tolling Ultra haute pureté Sputtering Public Crystal Growth Rod, Plate, poudre, etc.
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Palladium Foil Recent Research

  • Interaction of CO with palladium supported on oxidized tungsten.
    J Phys Chem B Condens Matter Mater Surf Interfaces Biophys. 2006 Nov 30;110(47):23837-44.

  • Temperature dependence of the kinetics for the complete oxidation of methane on palladium and palladium oxide.
    J Phys Chem B Condens Matter Mater Surf Interfaces Biophys. 2005 Feb 17;109(6):2331-7.

  • A titania nanotube-array room-temperature sensor for selective detection of hydrogen at low concentrations.
    J Nanosci Nanotechnol. 2004 Sep;4(7):733-7.

  • Measurements and nuclear model calculations on proton-induced reactions on 103Rh up to 40 MeV: evaluation of the excitation function of the 103Rh(p,n)103Pd reaction relevant to the production of the therapeutic radionuclide 103Pd.
    Appl Radiat Isot. 2002 Jun;56(6):821-31.

  • Cyclotron production of no-carrier-added palladium-103 by bombardment of rhodium-103 target.
    Appl Radiat Isot. 2001 Oct;55(4):441-5.

  • Transmission electron microscopic investigation of high-palladium dental casting alloys.
    Dent Mater. 1997 Nov;13(6):365-71.

  • Patch testing with pure palladium metal in patients with sensitivity to palladium chloride.
    Contact Dermatitis. 1992 May;26(5):327-31.

  • Statistical analysis of the ability of police dental surgeons in identification of dental filling materials.
    Nihon Hoigaku Zasshi. 1991 Dec;45(5-6):361-6.

  • Noble alloys in dentistry.
    Curr Opin Dent. 1991 Apr;1(2):218-21. Review.

  • Microstructural characterization of a foil crown system.
    Quintessence Int. 1991 Feb;22(2):113-8.

 

 

 

 

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