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首页> 外文期刊>Advanced Functional Materials >Polymer-Tem plated Hydrothermal Growth of Vertically Aligned Single-Crystal ZnO Nanorods and Morphological Transformations Using Structural Polarity
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Polymer-Tem plated Hydrothermal Growth of Vertically Aligned Single-Crystal ZnO Nanorods and Morphological Transformations Using Structural Polarity

机译:垂直排列的单晶ZnO纳米棒的聚合物-Tem镀水热生长和利用结构极性的形态转变

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摘要

Position-configurable, vertical, single-crystalline ZnO nanorod arrays are fabricated via a polymer-templated hydrothermal growth method at a low temperature of 93 ℃. A sol-gel processed dense c-oriented ZnO seed layer film is employed to grow nanorods along the c-axis direction [0001] regardless of any substrate crystal mismatches. Here, one-beam laser-interference lithography is utilized to fabricate nanoscale holes over an entire 2-in. wafer during the preparation of the polymer template. As such, vertically aligned ZnO nanorods can be grown from the seed layer exposed at the bottom of each hole. Furthermore, morphological transformations of the ZnO nanorods into pencil-like, needle-like, tubular, tree-like, and spherical shapes are obtained by controlling the growth conditions and utilizing the structural polarity of the ZnO nanorods.
机译:位置可配置的垂直单晶ZnO纳米棒阵列是通过聚合物模板水热生长法在93℃的低温下制备的。溶胶-凝胶处理的致密c取向ZnO籽晶层膜可用于沿c轴方向[0001]生长纳米棒,而与任何衬底晶体失配无关。在这里,单光束激光干涉光刻技术被用来在整个2英寸上制造纳米级孔。聚合物模板制备过程中的晶圆。这样,可以从暴露在每个孔底部的种子层生长垂直排列的ZnO纳米棒。此外,通过控制生长条件并利用ZnO纳米棒的结构极性,可以将ZnO纳米棒的形态转变为铅笔状,针状,管状,树状和球形。

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  • 来源
    《Advanced Functional Materials》 |2010年第18期|p.3055-3063|共9页
  • 作者单位

    Department of Materials Science and Engineering Gwangju Institute of Science and Technology (GIST) 261 Cheomdan-gwagiro (Oryong-dong) Buk-gu, Gwangju 500-712 (Republic of Korea);

    Advanced Photonics Research Institute Gwangju Institute of Science and Technology (GIST) 261 Cheomdan-gwagiro (Oryong-dong) Buk-gu, Gwangju 500-712 (Republic of Korea);

    Advanced Photonics Research Institute Gwangju Institute of Science and Technology (GIST) 261 Cheomdan-gwagiro (Oryong-dong) Buk-gu, Gwangju 500-712 (Republic of Korea);

    Department of Materials Science and Engineering Gwangju Institute of Science and Technology (GIST) 261 Cheomdan-gwagiro (Oryong-dong) Buk-gu, Gwangju 500-712 (Republic of Korea);

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