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Low cost preparation technique for conductive and transparent Sb doped SnO_2 nanocrystalline thin films for solar cell applications

机译:用于太阳能电池应用的导电透明SB掺杂SnO_2纳米晶薄膜的低成本制备技术

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摘要

The spray pyrolysis, as a non-vacuum cost-effective technique was used to develop high-quality thin films of SnO_2 and Sb-doped SnO_2 on Soda-lime glass substrates as transparent conductive oxides (TCOs). The surface morphology of the thin films under study was checked by the atomic force microscope. The average particle size and surface roughness of SnO_2 and Sb-doped SnO_2 thin films mainly depend on the Sb doping level. The structural identification of the as-deposited thin films has been investigated by the X-ray diffraction technique (XRD). XRD patterns have confirmed that the as-deposited thin films have a nanocrystalline structure with the tetragonal phase for all thin-film samples. The optical distribution of the transmittance and absorbance has been studied in a wide range of the wavelength (200-2500 nm). The absorption coefficient, optical band gap, and refractive index have been obtained by using the Swanepoel model. The optoelectronic properties for the thin films under study have been evaluated as TCOs films for photovoltaic applications. The sheet resistance and optical conductivity also have been determined for the thin film under investigation depending on the Sb doping level.
机译:作为非真空性成本有效技术的喷雾热解用于在钠钙玻璃基板上开发SnO_2和Sb掺杂SnO_2的高质量薄膜,作为透明导电氧化物(TCOS)。用原子力显微镜检查研究的薄膜的表面形态。 SnO_2和SB掺杂SnO_2薄膜的平均粒度和表面粗糙度主要取决于Sb掺杂水平。通过X射线衍射技术(XRD)研究了沉积的薄膜的结构识别。 XRD图案已经证实,沉积的薄膜具有纳米晶体结构,其具有四方相对于所有薄膜样品。已经在多范围的波长(200-2500nm)中研究了透射率和吸光度的光分布。通过使用Swanepoel模型获得了吸收系数,光学带隙和折射率。用于研究的薄膜的光电性已被评估为用于光伏应用的TCOS薄膜。根据Sb掺杂水平,还针对正在研究的薄膜确定薄膜电阻和光学电导率。

著录项

  • 来源
    《Superlattices and microstructures》 |2020年第11期|106697.1-106697.14|共14页
  • 作者单位

    Solid State Physics and Accelerators Department National Centre for Radiation Research and Technology (NCRRT) Egyptian Atomic Energy Authority (EAEA) Nasr City Cairo Egypt;

    Department of Chemistry Faculty of Education Ain Shams University Roxy 11757 Cairo Egypt Nanoscience Laboratory for Environmental and Biomedical Applications (NLEBA) Department of Physics Faculty of Education Ain Shams University Roxy 11757 Cairo Egypt;

    Research Center for Advanced Materials Science (RCAMS) King Khalid University Abha 61413 P.O. Box 9004 Saudi Arabia Advanced Functional Materials & Optoelectronic Laboratory (AFMOL) Department of Physics Faculty of Science King Khalid University P.O.Box 9004 Abha Saudi Arabia Semiconductor Lab. Department of Physics Faculty of Education Ain Shams University Roxy 11757 Cairo Egypt;

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

    Spray pyrolysis; SnO_2 thin films conductive window layer; Optical properties;

    机译:喷雾热解;SnO_2薄膜导电窗层;光学特性;

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