Search Results - "Torardi, C. C"

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    Bulk Superconductivity up to 122 K in the Tl-Pb-Sr-Ca-Cu-O System by Subramanian, M. A., Torardi, C. C., Gopalakrishnan, J., Gai, P. L., Calabrese, J. C., Askew, T. R., Flippen, R. B., Sleight, A. W.

    “…New high-temperature superconductors based on oxides of thallium and copper, but not containing barium, have been prepared. A transition temperature…”
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    Crystal structure of Tl2Ba2Ca2Cu3O10, a 125 K superconductor by TORARDI, C. C, SUBRAMANIAN, M. A, CALABRESE, J. C, GOPALAKRISHNAN, J, MORRISSEY, K. J, ASKEW, T. R, FLIPPEN, R. B, CHOWDHRY, U, SLEIGHT, A. W

    “…There is now a new series of high-temperature superconductors that may be represented as (A(III)O)(2)A(2)(II)Can-1CunO2+2n where A(III) is Bi or Tl, A(II) is…”
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    Hole Density Dependence of the Critical Temperature and Coupling Constant in the Cuprate Superconductors by M.-H. Whangbo, Torardi, C. C.

    “…A bond valence sum (BVS) analysis was performed for the p-type cuprate superconductors. The superconducting critical temperature T$_c$ versus in-plane Cu-O BVS…”
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    Polyaniline-related ion-barrier anticorrosion coatings by Wang, Jianguo, Torardi, Charlie C., Duch, Michael W.

    Published in Synthetic metals (01-10-2007)
    “…A polyaniline (PAn) containing coating layer leads to substrate corrosion in an environment of aggressive anions. A cationic coating results in delamination or…”
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    Crystal structure of the high-temperature superconductor Tl2Ba2CaCu2O8 by SUBRAMANIAN, M. A, CALABRESE, J. C, TORARDI, C. C, GOPALAKRISHNAN, J, ASKEW, T. R, FLIPPEN, R. B, MORRISSEY, K. J, CHOWDHRY, U, SLEIGHT, A. W

    Published in Nature (London) (31-03-1988)
    “…X-ray diffraction data for a single crystal of the 2212 phase of the high- temperature superconductor Tl2Ba2CaCu2O8, which has an onset temperature of about…”
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    Solid state chemistry and luminescence of X-ray phosphors by Issler, S.L., Torardi, C.C.

    Published in Journal of alloys and compounds (15-10-1995)
    “…X-ray phosphors are solid state inorganic materials used in medical X-ray imaging applications. The role of these phosphors is to reduce the exposure of the…”
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    X-Ray and Ultraviolet Luminescence of Li3Ta1−xNbxO4 Prepared by Flux Synthesis and Characterization of a New High Efficiency X-Ray Phosphor by Miao, C.R., Torardi, C.C.

    Published in Journal of solid state chemistry (01-06-1999)
    “…The phase development and luminescence properties, under both X-ray and ultraviolet excitation, of the lithium orthotantalate–lithium orthoniobate system,…”
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    A New High-Efficiency UV-Emitting X-Ray Phosphor, BaHf1−xZrx(PO4)2 by Miao, C.R., Torardi, C.C.

    Published in Journal of solid state chemistry (15-11-2000)
    “…Barium hafnium–zirconium phosphate BaHf1−xZrx(PO4)2 (x=0–0.2), having the monoclinic KFe(SO4)2 (Yavapaiite) structure, is a broad-band UV-emitting phosphor. At…”
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    Vapor-deposited CaWO4 phosphor by Carcia, P. F., Reilly, M., Torardi, C. C., Crawford, M. K., Miao, C. R., Jones, B. D.

    Published in Journal of materials research (01-05-1997)
    “…In this paper we describe the preparation, microstructure, and x-ray excited luminescence of vapor-deposited CaWO4 films up to about 50 μm thick, comparing…”
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    Flux Growth of Vanadyl Pyrophosphate, (VO)2P2O7, and Spin Dimer Analysis of the Spin Exchange Interactions of (VO)2P2O7 and Vanadyl Hydrogen Phosphate, VO(HPO4)·0.5H2O by Koo, Hyun-Joo, Whangbo, Myung-Hwan, VerNooy, Paul D, Torardi, Charlie C, Marshall, William J

    Published in Inorganic chemistry (09-09-2002)
    “…Large transparent blue crystals of vanadyl pyrophosphate, (VO)2P2O7, were grown from a phosphorus pentoxide flux, and the single-crystal X-ray structure of…”
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    Observation of a Weak Ferromagnetic Ground State Structure for the Lithium-Insertion Compound Li2Fe2(MoO4)3 by Reiff, W.M., Zhang, J.H., Tam, H., Attfield, J.P., Torardi, C.C.

    Published in Journal of solid state chemistry (01-04-1997)
    “…The low-temperature magnetism and neutron structure of orthorhombic Li2Fe2(MoO4)3, synthesized via the topotactic redox-insertion reaction of LiI with…”
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