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  • Inorganic Chemistry  (1)
  • PACS: 81.05.Tp; 81.20.-n  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Applied physics 71 (2000), S. 83-85 
    ISSN: 1432-0630
    Keywords: PACS: 81.05.Tp; 81.20.-n
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: Abstract. Nanotubes exhibiting a novel structure – boron nitride (BN) conical nanotubes whose walls consist of conical layers with their cone axis parallel to the tube axis, as opposed to ordinary nanotubes, composed of concentric cylindrical layers with their normal perpendicular to the tube axis – were synthesized simultaneously with BN nanotubes by using carbon nanotubes (CNTs) as templates. The diameters of the BN conical nanotubes are typically about 15 nm, which is similar to those of the starting CNTs. Apex angles and inner diameters of most BN conical nanotubes are about 40° and 1 nm, respectively. The lengths of the BN conical nanotubes range from 50 nm to up to several micrometers.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Phasenbeziehungen und Sauerstoff-Nichtstöchiometrie der perowskitartigen Verbindung SrCoOx (2,29 〈 x 〈 2,80)Strontiumcobaltate der Zusammensetzung SrCoO2,29 bis SrCoO2,80 sind unter verschiedenen Bedingungen, in bezug auf Den Sauerstoffdruck und Temperatur, dargestellt worden. Die bei höheren Temperaturen (über 800°C) dargestellten Proben kristallisierten, abhängig vom Sauerstoffdefizit, im Brownmillerit- oder Perowskit-Typ. Eine Perowskit-Phase mit großem Sauerstoff-Defizit, SrCoO2,29, und eine Brownmillierit-feste-Lösung, SrCoOx (2,42 〈 x 〈 2,52) wurden beobachtet. Andererseits kristallisierten bei niedriger Temperatur (unter 800°C) geglühte Proben nicht in der 2H-Typ Struktur mit dem Sr:Co-Verhältnis von 1:1 sondern in der Cobaltdefizit-Phase, 2H-SrCo1-uOx (u ≍ 0,1) und Co3O4. Der sauerstoffreiche Perowskit SrCoO2,67-2,80 wurde durch Glühen der Brownmillerit-Phase unter hohem Sauerstoffdruck bei 300°C Erhalten. Die elektrische Leitfähigkeit von SrCoOx (2,29 〈 x 〈 2,80) und der Sauerstoff-Diffusionskoeffizient der Perowskit-Phase SrCoOx (x = 2,68, 2,75 und 2,80) wurden als Funktion Der Temperatur gemessen. SrCoO2,80 zeigte Den sehr hohen Diffusionskoeffizienten von 2,3 · 10-11 cm2 sec-1 bei 23°C.
    Notes: Strontium cobaltates in the composition range, SrCoO2.29-SrCoO2.80, have been prepared under various conditions with respect to the oxygen pressure and temperature. Samples prepared at high temperatures (above 800°C) crystallized in the brownmillerite or perovskite type Structure Depending on oxygen Deficiency. A perovskite phase having large oxygen Deficiency, SrCoO2.29, and a brownmillerite solid solution, SrCoOx (2.42 〈 x 〈 2.52), were observed. On the other hand, samples annealed at low temperatures (below 800°C) did not crystallize in 2H type Structure with Sr:Co ratio of 1:1 but in the cobalt Deficient phase, 2H-SrCo1-uOx (u ≍ 0.1) and Co3O4. The high oxygen content perovskite SrCoO2.67-2.80 was obtained by annealing the brown-millerite phase under high oxygen pressures at 300°C. The electrical conductivity of SrCoOx (2.29 〈 x 〈 2.80) and the oxygen diffusion coefficient of the perovskite phase SrCoOx (x = 2.68, 2.75 and 2.80) were measured as a function of temperature. SrCoO2.80 showed the very high diffusion coefficient of 2.3 × 10-11 cm2 sec-1 at 23°C.
    Additional Material: 5 Ill.
    Type of Medium: Electronic Resource
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