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首页> 外文期刊>Journal of materials science >Formation of self-assembled hierarchical structure on Zn doped in CuO nanoparticle using a microwave-assisted chemical precipitation approach
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Formation of self-assembled hierarchical structure on Zn doped in CuO nanoparticle using a microwave-assisted chemical precipitation approach

机译:用微波辅助化学沉淀方法在CuO纳米粒子掺杂掺杂的自组装层次结构

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摘要

In the present work, CuO and Cu_(1-x)Zn_xO were synthesized with the function of the Zn doping ratio by microwave-assisted chemical precipitation approach. The X-ray diffraction pattern shows that the mono-phase CuO with a mono-clinical structure and no other secondary phase has been observed for the CU_(1-x) Zn_xO with different Zn ratio and confirms CuO lattice does not get destroyed by the addition of Zn. The Raman spectra and HR-TEM analysis support the XRD results. The self-assembled hierarchical flower morphology was obtained for the higher doping ratio of Zn. The energy dispersive analysis of X-ray spectrum confirms the presence of Zn in the CuO lattice and the stoichiometry obtained. The optical band gap was found to be 1.78 eV for CuO nanoparticles, and the values are between 1.80 and 2.29 eV for Zn-doped CuO. For higher Zn-doped CuO, optical band splitting was observed due to flower-like morphology. The recombination of an electron-hole was reduced for higher doping ratio nanoparticles. These properties are needed for photocatalytic application.
机译:在本作工作中,CuO和Cu_(1-X)Zn_XO通过微波辅助化学沉淀方法用Zn掺杂比合成。 X射线衍射图表明,用不同Zn比的Cu_(1-X)Zn_XO与单相CuO与单临床结构和没有其他二次相的Zn_XO,并确认Cuo格子不会被摧毁添加Zn。拉曼光谱和HR-TEM分析支持XRD结果。获得Zn较高掺杂比的自组装层状花卉形态。 X射线光谱的能量分散分析证实了CuO格子中的Zn的存在和获得的化学计量。对于CuO纳米颗粒,发现光带间隙为1.78eV,并且该值在1.80和2.29eV之间用于Zn掺杂CuO。对于更高的Zn掺杂CuO,由​​于花状形态,观察到光带分裂。对于较高的掺杂比纳米颗粒,还原电子孔的重组。光催化应用需要这些性质。

著录项

  • 来源
    《Journal of materials science 》 |2021年第14期| 19339-19351| 共13页
  • 作者单位

    Department of Physics St. Joseph's College (Autonomous) Bangalore 560027 India Department of Applied Physics Karunya Institute of Technology and Sciences Coimbatore 641114 India;

    Department of Applied Physics Karunya Institute of Technology and Sciences Coimbatore 641114 India;

    Department of Physics St. Joseph's College (Autonomous) Bangalore 560027 India;

    Department of Applied Physics Karunya Institute of Technology and Sciences Coimbatore 641114 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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