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Structural and optical properties of CdO nanostructures prepared by atmospheric-pressure CVD

机译:大气压CVD法制备CdO纳米结构的结构和光学性质

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摘要

Cadmium oxide (CdO) nanostructures of various shapes were successfully grown on gold (Au) nanocolloid coated c-plane sapphire substrates by atmospheric-pressure CVD using Cd powder and H_2O as source materials. CdO nanorods (NRs) exhibited tapered shapes and the degree of the tapering became larger with increasing substrate temperature. One of the possible reasons for the tapering behavior is the competition between the axial growth due to the vapor-liquid-solid (VIS) mechanism and the radial growth due to the vapor-solid (VS) mechanism. The influence of the competition between the two different growth mechanisms was also confirmed on the appearance of "seaweed-like" NRs. Moreover, we cannot neglect the influence of the shrinkage of catalyst particles during the growth process on the tapering behavior. In addition, there is a possibility that the temporal evolution of catalyst particles, such as diffusion, splitting, migration and coalescence, contributes not only to the disappearance of catalyst particles on the tips of the NRs, resulting in the enhancement of the radial growth relative to the axial growth, but also to the formation of nanobelts (NBs) and nanotrees (NTs). Photoacoustic measurements revealed that the absorption edge shifts towards lower energies and the absorption band below the absorption edge becomes larger with increasing T_s. This tendency may be due to the increase of intrinsic defects and/or the decrease in residual impurities.
机译:以镉粉和H_2O为原料,通过大气压CVD在金(Au)纳米胶体涂覆的c面蓝宝石衬底上成功生长了各种形状的氧化镉(CdO)纳米结构。 CdO纳米棒(NRs)呈锥形,并且锥度随衬底温度的升高而变大。渐缩行为的可能原因之一是由于气液固(VIS)机理引起的轴向增长与由于气固(VS)机理引起的径向增长之间的竞争。还证实了两种不同生长机制之间竞争的影响对“类海藻” NR的出现。此外,我们不能忽略催化剂颗粒在生长过程中收缩对锥度行为的影响。另外,有可能催化剂颗粒的时间演变,例如扩散,分裂,迁移和聚结,不仅会导致NRs尖端催化剂颗粒的消失,从而导致相对径向生长的增强。不仅可以促进轴向生长,而且还可以促进纳米带(NBs)和纳米树(NTs)的形成。光声测量表明,吸收边移向较低能量,并且随着T_s的增加,吸收边以下的吸收带变大。这种趋势可能是由于固有缺陷的增加和/或残留杂质的减少。

著录项

  • 来源
    《Thin Solid Films》 |2013年第15期|237-241|共5页
  • 作者单位

    Graduate School of Science & Engineering, Ehime University, 3 Bunkyo-cho, Matsuyama 790-8577, Japan;

    Graduate School of Science & Engineering, Ehime University, 3 Bunkyo-cho, Matsuyama 790-8577, Japan;

    Kagawa National College of Technology, 551 Koda, Takuma-cho, Mitoyo 769-1192, Japan;

    Kagawa National College of Technology, 551 Koda, Takuma-cho, Mitoyo 769-1192, Japan;

    Graduate School of Science & Engineering, Ehime University, 3 Bunkyo-cho, Matsuyama 790-8577, Japan;

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

    chemical vapor deposition process; nanomaterials; oxide; semiconducting cadmium compounds;

    机译:化学气相沉积工艺;纳米材料氧化物半导体镉化合物;

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