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Unconventional gallium oxide nanowires.

Unconventional gallium oxide nanowires. Research Abstract Details 

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  • Unconventional gallium oxide nanowires. Abstract Text:

    Zigzag and helical beta-Ga(2)O(3) one-dimensional nanostructures were produced by thermal evaporation of gallium oxide in the presence of gallium nitride. High-resolution TEM analysis indicates that each individual zigzag nanostructure has a periodic arrangement of three distinct blocks: two structurally perfect blocks mirrored with respect to each other on the (002) plane, and one stacking-fault-rich block sandwiched between them. In a zigzag nanostructure, the growth orientation of a beta-Ga(2)O(3) crystal changes alternately in three blocks. The zigzag nanostructure as a whole has the [001] axial direction. In addition to zigzag nanostructures, single-crystalline helical nanowires were also obtained.

    Unconventional gallium oxide nanowires. Publishing Authors By Initials

    For similar natural sciences: chemistry: chemistry, physical: surface properties research abstracts see: natural sciences: chemistry: chemistry, physical: surface properties research

    PUBMED ID PMID:

    MEDLINE DATE:

    Unconventional gallium oxide nanowires. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Small (Weinheim an der Bergstrasse, Germany)

    VOLUME: 1

    Page Numbers: 883-8

    Journal Abbreviation: Small

    ISSN: 1613-6829

    DAY: 17

    MONTH: Aug

    YEAR: 2005

    Unconventional gallium oxide nanowires. Information

    Number of References:

    LANGUAGE: eng

    NlmUniqueID: 101235338

    Unconventional gallium oxide nanowires. Keywords Mesh Terms:

    KEYWORDS: Surface Properties

    MESH TERMS: chemistry

    Chemical & Substance for Abstract: Unconventional gallium oxide nanowires. Information

    Substance Name: Gallium

    Registry Number: 7440-55-3

    Grant and Affiliation Information for Unconventional gallium oxide nanowires.

    AFFILIATION: Advanced Materials Laboratory, National Institute for Materials Science, Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan. ZHAN.Jinhua@nims.go.jp

    Country: Germany

    Germany Research PublicationGermany Research Publication

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    MEDLINETA: Small

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