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Spontaneous hyper-branching in ZnO nanostructures: morphology dependent electron emission and light detection

机译:ZnO纳米结构中的自发超分支:形态依赖电子发射和光检测

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摘要

Higher dimensional ZnO nanoforms offer unprecedented advantages over their low dimensional counterparts in emerging technologies. This motivated the researchers to design ZnO hierarchical architectures which are expected to offer performances improved to device benchmarks. Starting from 1D ZnO nanospike arrays, hierarchical cactus and tree-like ZnO arrays with increasing branching and complexities have been grown via a simple wet chemical approach in ambient conditions. The zero thermal budget, large area of fabrication and absence of any structure-directing agents are the novel highlights of the current synthesis protocol. Cathodoluminescence spectroscopic investigation reveals a gradual increment in defect constitution in these nanoforms with increasing structural complexity. The synthesized nanostructure arrays display promise in electron field emission owing to their structural uniqueness as indicated by field distribution calculations using ANSYS electromagnetic software. Furthermore, these higher order nanostructures are capable of detecting UV light with photocurrent gains as high as 2.21 x 10(4).
机译:高尺寸ZnO纳米型在新兴技术中的低维对应上提供前所未有的优势。这激发了研究人员设计Zno分层架构,这些架构预计将提供改进的设备基准。从1D ZnO纳泊克里斯克阵列开始,通过在环境条件下通过简单的湿化学方法种植了分支和复杂性增加的分层仙人掌和树状ZnO阵列。零热预算,大面积的制造和任何结构引导剂是当前合成方案的新颖亮点。阴极发光光谱调查揭示了这些纳米型缺陷体构造的逐渐增加,具有增加的结构复杂性。由于使用ANSYS电磁软件的现场分布计算所示,合成的纳米结构阵列显示在电子场发射中的承诺。此外,这些高阶纳米结构能够检测具有光电流的UV光,高达2.21×10(4)。

著录项

  • 来源
    《RSC Advances》 |2015年第99期|共12页
  • 作者单位

    Jadavpur Univ Dept Phys Thin Films &

    Nanosci Lab Kolkata 700032 India;

    Jadavpur Univ Dept Phys Thin Films &

    Nanosci Lab Kolkata 700032 India;

    Indian Inst Technol Dept Phys Gauhati India;

    Jadavpur Univ Dept Phys Thin Films &

    Nanosci Lab Kolkata 700032 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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