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首页> 外文期刊>Journal of materials science >The influence of Fe substitution into photovoltaic performance of p-CuO/n-Si heterojunctions
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The influence of Fe substitution into photovoltaic performance of p-CuO/n-Si heterojunctions

机译:Fe替换到P-CUO / N-Si异质结的光伏性能的影响

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摘要

Fe-substituted CuO thin films have been prepared by spin coating onto cleaned n-Si and glass substrates at various concentrations (2%, 6%, 10%). The AFM results show that the surface morphology of CuO thin films is strongly influenced by film thickness. The optical band gaps of the films were determined with Kubelka Munk function by using diffuse reflectance data and a reduction of 59 meV in the optical band gap was observed for 10% Fe doped CuO film. The ideality factors and barrier height values of the diodes have been varied between 3.17 and 2.74 and 0.82 and 0.71 eV with the 2%, 6%, and 10% Fe doping, respectively. Additionally, the series resistance (RS) values have been defined via employing the Cheung-Cheung method. The highest and lowest values of RS have been calculated as 1332 Ω for CuO/n-Si and 18 Ω for 6%Fe:CuO/n-Si, respectively. The electrical characteristics of these heterojunction structures have been examined under dark and different illumination intensities. Moreover, their photovoltaic performances have been compared. Furthermore, the power conversion efficiencies of CuO:Fe/n-Si have been calculated and found to be increased from 0.1 to 1.13% with increasing Fe doping.
机译:通过在各种浓度(2%,6%,10%)上,通过旋涂在清洁的N-Si和玻璃基板上制备Fe取代的CuO薄膜。 AFM结果表明CuO薄膜的表面形态受薄膜厚度的强烈影响。通过使用漫反射率数据用Kubelka Munk功能测定薄膜的光带间隙,并且在光带间隙中减少了59meV的10%Fe掺杂CuO膜。二极管的理想因素和屏障高度值在3.17和2.74和0.82和0.82和0.71eV之间,分别为2%,6%和10%Fe掺杂。另外,通过采用张翔方法定义了串联电阻(RS)值。 RS的最高和最低值已经计算为CuO / N-Si的1332Ω,分别为18Ω,可分别为6%Fe:Cuo / N-Si。在暗和不同的照明强度下检查了这些异质结结构的电特性。而且,他们的光伏性能已经进行了比较。此外,CuO:Fe / N-Si的功率转换效率已经计算,发现随着Fe掺杂的增加,从0.1增加到1.13%。

著录项

  • 来源
    《Journal of materials science》 |2021年第15期|20755-20766|共12页
  • 作者单位

    Department of Opticianry Program Vocational School of Health Services Batman University Batman Turkey;

    Department of Physics Faculty of Science Eskisehir Technical University Yunusemre Campus Eskisehir 26470 Turkey;

    CEITEC BUT Brno University of Technology Purkynova 123 612 00 Brno Czech Republic Institute of Physical Engineering Brno University of Technology Technicka 2 616 69 Brno Czech Republic;

    CEITEC BUT Brno University of Technology Purkynova 123 612 00 Brno Czech Republic Department of Physics Faculty of Electrical Engineering and Communication Brno 616 00 Czech Republic;

    Department of Physics Faculty of Science Eskisehir Technical University Yunusemre Campus Eskisehir 26470 Turkey;

  • 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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