About: Nanocoloidal solutions of As-S glasses and their relation to the surface morfology of spin- coated amorphous films     Goto   Sponge   NotDistinct   Permalink

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  • Amorphous chalcogenide (As-S) thin films can be fabricated by the spin-coating technique from appropriate solutions of the corresponding glasses. Such films exhibit a grainy texture, which is presumably related to the cluster size in solution. In the paper we report on a possible relation between the grain size of the surface of soin-coated As33S67 chalcogenide thin films and the cluster size of the glass in bulylamine solutions, using atomic force microscopy and dynamic light scattering, respectively. A novel athermal photo-aggregation effect in the liquid state is reported.
  • Amorphous chalcogenide (As-S) thin films can be fabricated by the spin-coating technique from appropriate solutions of the corresponding glasses. Such films exhibit a grainy texture, which is presumably related to the cluster size in solution. In the paper we report on a possible relation between the grain size of the surface of soin-coated As33S67 chalcogenide thin films and the cluster size of the glass in bulylamine solutions, using atomic force microscopy and dynamic light scattering, respectively. A novel athermal photo-aggregation effect in the liquid state is reported. (en)
Title
  • Nanocoloidal solutions of As-S glasses and their relation to the surface morfology of spin- coated amorphous films
  • Nanocoloidal solutions of As-S glasses and their relation to the surface morfology of spin- coated amorphous films (en)
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  • Nanocoloidal solutions of As-S glasses and their relation to the surface morfology of spin- coated amorphous films
  • Nanocoloidal solutions of As-S glasses and their relation to the surface morfology of spin- coated amorphous films (en)
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  • RIV/00216275:25310/09:00008654!RIV11-MSM-25310___
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  • P(LC523), Z(MSM0021627501)
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  • 328400
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  • RIV/00216275:25310/09:00008654
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  • amorphous chalcogenide; As-S glasses; technological application; nanostructure (en)
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  • [1A4F653EBAA2]
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  • Berlín
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  • NATO Science for Peace and Security Series B: Nanostructured materials for advanced technological applications
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  • Frumar, Miloslav
  • Kohoutek, Tomáš
  • Wágner, Tomáš
  • Chrissanthopoulos, A.
  • Yannopoulos, S.N..
  • Kostadinova, O.
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  • Springer-Verlag
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  • 978-1-4020-9915-1
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  • 25310
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