The Experts below are selected from a list of 12 Experts worldwide ranked by ideXlab platform

David B Beach - One of the best experts on this subject based on the ideXlab platform.

  • fabrication of long lengths of epitaxial buffer layers on biaxially textured nickel substrates using a continuous reel to reel dip coating unit
    Journal of the American Ceramic Society, 2004
    Co-Authors: Parans M Paranthaman, T G Chirayil, F A List, A Goyal, E D Specht, P M Martin, R K Williams, D M Kroeger, Jonathan S Morrell, David B Beach
    Abstract:

    A low-cost, nonvacuum, solution precursor route has been developed to produce epitaxial oxide buffer layers of Eu2O3 or La2Zr2O7 on biaxially textured Ni (100) tapes. A reel-to-reel continuous dip-coating unit consisting of a constant-tension tape transport system attached to a controlled atmosphere Furnace was fabricated. Nickel tapes were pulled through a 2-methoxyethanol solution of europium methoxyethoxide/acetate or lanthanum zirconium methoxyethoxide. The double-sided dip-coated tapes were then annealed in a Preheated Furnace at 1000°–1100°C with a high flow rate of Ar/H2 (4%) gas. The dip-coated buffers were dense, continuous, crack-free, and epitaxial with a single cube texture. A critical current (Jc) of >1 MA/cm2 at 77 K and self-field was obtained for YBa2Cu3O7-δ (YBCO) films with a layer sequence of YBCO (ex situ BaF2 process)/CeO2 (sputtered)/YSZ (sputtered)/Eu2O3 (dip-coated)/nickel. We have produced 1–2 m lengths of epitaxial buffer layers on textured nickel substrates using a nonvacuum process for the first time.

Parans M Paranthaman - One of the best experts on this subject based on the ideXlab platform.

  • fabrication of long lengths of epitaxial buffer layers on biaxially textured nickel substrates using a continuous reel to reel dip coating unit
    Journal of the American Ceramic Society, 2004
    Co-Authors: Parans M Paranthaman, T G Chirayil, F A List, A Goyal, E D Specht, P M Martin, R K Williams, D M Kroeger, Jonathan S Morrell, David B Beach
    Abstract:

    A low-cost, nonvacuum, solution precursor route has been developed to produce epitaxial oxide buffer layers of Eu2O3 or La2Zr2O7 on biaxially textured Ni (100) tapes. A reel-to-reel continuous dip-coating unit consisting of a constant-tension tape transport system attached to a controlled atmosphere Furnace was fabricated. Nickel tapes were pulled through a 2-methoxyethanol solution of europium methoxyethoxide/acetate or lanthanum zirconium methoxyethoxide. The double-sided dip-coated tapes were then annealed in a Preheated Furnace at 1000°–1100°C with a high flow rate of Ar/H2 (4%) gas. The dip-coated buffers were dense, continuous, crack-free, and epitaxial with a single cube texture. A critical current (Jc) of >1 MA/cm2 at 77 K and self-field was obtained for YBa2Cu3O7-δ (YBCO) films with a layer sequence of YBCO (ex situ BaF2 process)/CeO2 (sputtered)/YSZ (sputtered)/Eu2O3 (dip-coated)/nickel. We have produced 1–2 m lengths of epitaxial buffer layers on textured nickel substrates using a nonvacuum process for the first time.

F A List - One of the best experts on this subject based on the ideXlab platform.

  • fabrication of long lengths of epitaxial buffer layers on biaxially textured nickel substrates using a continuous reel to reel dip coating unit
    Journal of the American Ceramic Society, 2004
    Co-Authors: Parans M Paranthaman, T G Chirayil, F A List, A Goyal, E D Specht, P M Martin, R K Williams, D M Kroeger, Jonathan S Morrell, David B Beach
    Abstract:

    A low-cost, nonvacuum, solution precursor route has been developed to produce epitaxial oxide buffer layers of Eu2O3 or La2Zr2O7 on biaxially textured Ni (100) tapes. A reel-to-reel continuous dip-coating unit consisting of a constant-tension tape transport system attached to a controlled atmosphere Furnace was fabricated. Nickel tapes were pulled through a 2-methoxyethanol solution of europium methoxyethoxide/acetate or lanthanum zirconium methoxyethoxide. The double-sided dip-coated tapes were then annealed in a Preheated Furnace at 1000°–1100°C with a high flow rate of Ar/H2 (4%) gas. The dip-coated buffers were dense, continuous, crack-free, and epitaxial with a single cube texture. A critical current (Jc) of >1 MA/cm2 at 77 K and self-field was obtained for YBa2Cu3O7-δ (YBCO) films with a layer sequence of YBCO (ex situ BaF2 process)/CeO2 (sputtered)/YSZ (sputtered)/Eu2O3 (dip-coated)/nickel. We have produced 1–2 m lengths of epitaxial buffer layers on textured nickel substrates using a nonvacuum process for the first time.

D M Kroeger - One of the best experts on this subject based on the ideXlab platform.

  • fabrication of long lengths of epitaxial buffer layers on biaxially textured nickel substrates using a continuous reel to reel dip coating unit
    Journal of the American Ceramic Society, 2004
    Co-Authors: Parans M Paranthaman, T G Chirayil, F A List, A Goyal, E D Specht, P M Martin, R K Williams, D M Kroeger, Jonathan S Morrell, David B Beach
    Abstract:

    A low-cost, nonvacuum, solution precursor route has been developed to produce epitaxial oxide buffer layers of Eu2O3 or La2Zr2O7 on biaxially textured Ni (100) tapes. A reel-to-reel continuous dip-coating unit consisting of a constant-tension tape transport system attached to a controlled atmosphere Furnace was fabricated. Nickel tapes were pulled through a 2-methoxyethanol solution of europium methoxyethoxide/acetate or lanthanum zirconium methoxyethoxide. The double-sided dip-coated tapes were then annealed in a Preheated Furnace at 1000°–1100°C with a high flow rate of Ar/H2 (4%) gas. The dip-coated buffers were dense, continuous, crack-free, and epitaxial with a single cube texture. A critical current (Jc) of >1 MA/cm2 at 77 K and self-field was obtained for YBa2Cu3O7-δ (YBCO) films with a layer sequence of YBCO (ex situ BaF2 process)/CeO2 (sputtered)/YSZ (sputtered)/Eu2O3 (dip-coated)/nickel. We have produced 1–2 m lengths of epitaxial buffer layers on textured nickel substrates using a nonvacuum process for the first time.

Jonathan S Morrell - One of the best experts on this subject based on the ideXlab platform.

  • fabrication of long lengths of epitaxial buffer layers on biaxially textured nickel substrates using a continuous reel to reel dip coating unit
    Journal of the American Ceramic Society, 2004
    Co-Authors: Parans M Paranthaman, T G Chirayil, F A List, A Goyal, E D Specht, P M Martin, R K Williams, D M Kroeger, Jonathan S Morrell, David B Beach
    Abstract:

    A low-cost, nonvacuum, solution precursor route has been developed to produce epitaxial oxide buffer layers of Eu2O3 or La2Zr2O7 on biaxially textured Ni (100) tapes. A reel-to-reel continuous dip-coating unit consisting of a constant-tension tape transport system attached to a controlled atmosphere Furnace was fabricated. Nickel tapes were pulled through a 2-methoxyethanol solution of europium methoxyethoxide/acetate or lanthanum zirconium methoxyethoxide. The double-sided dip-coated tapes were then annealed in a Preheated Furnace at 1000°–1100°C with a high flow rate of Ar/H2 (4%) gas. The dip-coated buffers were dense, continuous, crack-free, and epitaxial with a single cube texture. A critical current (Jc) of >1 MA/cm2 at 77 K and self-field was obtained for YBa2Cu3O7-δ (YBCO) films with a layer sequence of YBCO (ex situ BaF2 process)/CeO2 (sputtered)/YSZ (sputtered)/Eu2O3 (dip-coated)/nickel. We have produced 1–2 m lengths of epitaxial buffer layers on textured nickel substrates using a nonvacuum process for the first time.