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Plasma-Aided Hydrogenation And Al-Doping: Increasing The Conductivity And Optical Transparency Of Zno Transparent Conducting Oxide

机译:等离子体辅助加氢和铝掺杂:提高Zno透明导电氧化物的电导率和光学透明度

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摘要

Plasma-assisted magnetron sputtering with varying ambient conditions has been utilised to deposit Al-doped ZnO (AZO) transparent conductive thin films directly onto a glass substrate at a low substrate temperature of 400 °C. The effects of hydrogen addition on electrical, optical and structural properties of the deposited AZO films have been investigated using X-ray diffractometry (XRD), scanning electron microscopy (SEM), Hall effect measurements and UV-vis optical transmission spectroscopy. The results indicate that hydrogen addition has a remarkable effect on the film transparency and conductivity with the greatest effects observed with a hydrogen flux of approximately 3 sccm. It has been demonstrated that the conductivity and the average transmittance in the visible range can increase simultaneously contrary to the effects observed by other authors. In addition, hydrogen incorporation further leads to the absorption edge shifting to a shorter wavelength due to the Burstein-Moss effect. These results are of particular relevance'to the development of the next generation of optoelectronic and photovoltaic devices based on highly transparent conducting oxides with controllable electronic and optical properties.
机译:已经利用具有变化的环境条件的等离子体辅助磁控溅射在400℃的低基板温度下将掺Al的ZnO(AZO)透明导电薄膜直接沉积到玻璃基板上。使用X射线衍射法(XRD),扫描电子显微镜(SEM),霍尔效应测量和UV-vis光学透射光谱法研究了加氢对沉积的AZO膜的电,光学和结构性质的影响。结果表明,氢的加入对膜的透明度和导电性具有显着的影响,在氢通量约为3 sccm时观察到的影响最大。已经证明,与其他作者观察到的效果相反,在可见光范围内的电导率和平均透射率可以同时增加。另外,由于布尔斯坦-莫斯效应,氢的掺入进一步导致吸收边移至较短的波长。这些结果与基于具有可控的电子和光学特性的高度透明的导电氧化物的下一代光电和光伏器件的开发特别相关。

著录项

  • 来源
    《Applied Surface Science》 |2011年第23期|p.9986-9990|共5页
  • 作者单位

    Plasma Sources and Applications Centre (PSAC), N1E, Nanyang Technological University, Nanyang Walk, Singapore 637616, Singapore;

    Plasma Sources and Applications Centre (PSAC), N1E, Nanyang Technological University, Nanyang Walk, Singapore 637616, Singapore;

    Plasma Nanoscience, School of Physics, The University of Sydney, Sydney, NSW 2006, Australia Plasma Nanoscience Centre Australia (PNCA), CSIRO Materials Science and Engineering, POBox218. Lindfield, NSW 2070, Australia;

    Plasma Sources and Applications Centre (PSAC), N1E, Nanyang Technological University, Nanyang Walk, Singapore 637616, Singapore;

    Plasma Nanoscience, School of Physics, The University of Sydney, Sydney, NSW 2006, Australia Plasma Nanoscience Centre Australia (PNCA), CSIRO Materials Science and Engineering, POBox218. Lindfield, NSW 2070, Australia;

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

    Plasma nanoscience; Oxide materials; Magnetron;

    机译:等离子体纳米科学;氧化物材料;磁控管;
  • 入库时间 2022-08-18 03:07:07

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