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Identification of marcasite in pyrite FeS2 thin films and the films' carrier transport characteristics

机译:鉴定黄铁矿FES2薄膜和薄膜的载体传输特性

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摘要

In this study, we characterized FeS2 thin films grown by the non-vacuum spin-coating method. We annealed the samples under a sulfur atmosphere at different sulfurization temperatures. The phase transformation from marcasite-containing pyrite to pure pyrite occurs between 350 and 400 degrees C. The structural phase formation on the films depends on the sulfurization temperature. It is known that pure pyrite thin films are more suitable for solar cells. FeS2 thin films with and without the marcasite phase were investigated in terms of their local electrical properties and carrier transport by conductive atomic force microscopy and Kelvin probe force microscopy. Interestingly, the pure pyrite thin film shows less conducting behavior than the mixed phase sample because the mixed phase thin film has other residues on the surface. Pure pyrite shows two major work functions at 4.64 and 4.70 eV, and the mixed phase sample has multiple surface potential peaks below 4.63 eV, which is the main pyrite FeS2 work function. Pure-phase pyrite thin films are promising for earth-abundant solar cell applications.
机译:在这项研究中,我们以非真空旋涂法生长的FES2薄膜为特征。我们在不同的硫化温度下在硫气氛下退火样品。将含马尔卡钛矿的黄铁矿到纯硫铁矿的相变在350至400℃之间发生。膜上的结构相形成取决于硫化温度。已知纯硫铁矿薄膜更适合于太阳能电池。通过导电原子力显微镜和开菜探针力显微镜,在其局部电性能和载体传输方面研究了具有和不具有马基酯相的薄膜。有趣的是,纯硫铁矿薄膜显示比混合相样品较少的导电行为,因为混合相薄膜在表面上具有其他残基。纯硫铁矿在4.64和4.70eV下显示两个主要的工作功能,混合相样品具有低于4.63eV的多个表面电位峰,这是主要的黄铁矿FES2工作功能。纯相硫铁矿薄膜对地面富有的太阳能电池应用是有前途的。

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  • 来源
    《RSC Advances》 |2016年第84期|共6页
  • 作者单位

    Ewha Womans Univ Dept Phys Seoul 03760 South Korea;

    Ewha Womans Univ Dept Phys Seoul 03760 South Korea;

    Ewha Womans Univ Dept Phys Seoul 03760 South Korea;

    Ewha Womans Univ Dept Phys Seoul 03760 South Korea;

    Soongsil Univ Dept Phys Seoul 06978 South Korea;

    Soongsil Univ Dept Phys Seoul 06978 South Korea;

    Korea Inst Energy Res Photovolta Lab Daejeon 34129 South Korea;

    Korea Inst Energy Res Photovolta Lab Daejeon 34129 South Korea;

    Ewha Womans Univ Dept Phys Seoul 03760 South Korea;

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

  • 入库时间 2022-08-19 22:33:13

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