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Radially oriented anthracene nanowire arrays: preparation, growth mechanism, and optical fluorescence

机译:径向导向蒽纳米线阵列:制备、生长机理和光学荧光

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摘要

Radially oriented anthracene nanowires and their self-assembled concentric ring arrays were prepared through a facial solvent-evaporation method. The successful growth of anthracene nanowires can be attributed to a combined mechanism of molecular self-assembly facilitated by strong π- π intermolecular interactions together with evaporation-induced capillary flow and fingering instability. Their radial orientation is determined by the capillary flow; their shape (either straight or curved nanowires) is governed by the competition between the capillary and Marangoni convectional flows. The self-assembly of nanowires into large-scale concentric ring arrays can be interpreted in terms of the repeated slipping-and-sticking motions of the contact line. The high-quality crystalline anthracene nanowire arrays exhibit size-dependent fluorescence emission with high-degree anisotropy.
机译:径向导向的蒽纳米线及其自组装同心环阵列准备通过面部溶剂挥发方法。纳米线可以归因于一个总和分子自组装的促进机制强烈的π-π分子间相互作用一起evaporation-induced毛细管流和指法不稳定。方向是由毛细管流;他们的形状(直或弯曲的纳米线)是由之间的竞争毛细管和马朗戈尼对流的流。自组装纳米线进入大规模同心圆环阵列可以解释重复slipping-and-sticking条款接触线的动作。水晶蒽纳米线阵列展览尺度依赖的荧光发射与高度各向异性。

著录项

  • 来源
    《Nanoscale》 |2011年第4期|1855-1860|共6页
  • 作者单位

    Nanjing Foreign Language School, 30 North Beijing Road, Nanjing, Jiangsu Province, 210008, P. R China;

    Department of Chemistry, National University of Singapore, 3 Science Drive 3, Republic of Singapore 117543;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    arrays; Radial; NanowireAnthracenescombined mechanismOriented;

    机译:数组;径向NanowireAnthracenescombinedmechanismOriented;
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