Bibliothek

feed icon rss

Ihre E-Mail wurde erfolgreich gesendet. Bitte prüfen Sie Ihren Maileingang.

Leider ist ein Fehler beim E-Mail-Versand aufgetreten. Bitte versuchen Sie es erneut.

Vorgang fortführen?

Exportieren
Filter
  • Digitale Medien  (1)
  • Thin films  (1)
Materialart
  • Digitale Medien  (1)
Erscheinungszeitraum
  • 1
    ISSN: 0392-6737
    Schlagwort(e): Thin films ; growth, structure, epitaxy, and nonelectronic properties ; Superconducting materials ; Superconducting films ; Conference proceedings
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Physik
    Notizen: Summary Metal-Organic Deposition (MOD) technique has been used for the first time, in the spray version, to obtain thin and thick films of BSCCO on substrates like MgO and Ag and, in the dipping version, to deposit YBCO thick films directly on a thin Ag wire. Diffraction data show that BSCCO films are textured and oriented with their normal axis along the [001] direction. Electron microprobe data confirm a strong presence of (2212) modification of BSCCO. The YBCO/Ag wire is very uniform, as confirmed by SEM micrographs, and shows a transition temperature around 90 K. Thick films and platelets of YBCO have been also prepared by metalorganic solution spraying and by using a commercial microwave oven in the last annealing stage, reducing the duration of this step from several hours to about 65 minutes. YBCO samples show good stoichiometry, a very smooth surface morphology and transition temperatures, as measured by a.c. susceptometry at low magnetic fields, which are around 90 K. Films, deposited on MgO, are oriented with their growth axis along the [005] direction and, if deposited on SrTiO3, along the [006] direction. Physical, chemical, structural and morphological properties of these HTSC samples obtained by MOD are presented and discussed, with the conclusion that this technique, which is simple, flexible, suitable for large surface areas, for ribbons and for wires, has achieved a good stage of maturity.
    Materialart: Digitale Medien
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
Schließen ⊗
Diese Webseite nutzt Cookies und das Analyse-Tool Matomo. Weitere Informationen finden Sie hier...