首页> 外文期刊>Journal of Materials Science >Highly transparent and conductive indium-doped zinc oxide films deposited at low substrate temperature by spray pyrolysis from water-based solutions
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Highly transparent and conductive indium-doped zinc oxide films deposited at low substrate temperature by spray pyrolysis from water-based solutions

机译:通过从水基溶液喷雾热解沉积在低底物温度下的高度透明和导电铟掺杂氧化锌膜

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摘要

In this paper, indium-doped zinc oxide (IZO) films were grown by spray pyrolysis, using zinc acetate and indium acetylacetonate precursors. The focus was on developing a solution recipe based on water as solvent, with only minor acetic acid content, as well as keeping the substrate temperature as low as possible-at 360 A degrees C. The process is therefore environment friendly and energy efficient. Despite the challenging conditions, the resulting IZO films were highly transparent and conductive. Their texture deviates strongly from the (002) texture of ZnO and depends on the indium content, which also influences the resistivity. The latter attains its minimum for an indium concentration of 4 at.% in the solution and decreases for increasing film thickness, reaching the value of (5.0 +/- 0.1) x 10(-3) a"broken vertical bar cm, mainly due to the increase in carrier mobility. The stability of the resistivity after high dose of UV irradiation was found to increase with the carrier density and the film thickness. Thick, highly doped films show minimal resistivity modification even after a total dose of 12.1 kJ/cm(2) UVA/UVB irradiation. Finally, to demonstrate its applicability in devices, the IZO electrode was used for the fabrication of a lead-perovskite absorber solar cell, yielding an energy conversion efficiency of 6% and 910 mV open-circuit voltage.
机译:在本文中,使用乙酸锌和乙酰丙酮前体喷雾热解掺杂掺杂氧化锌(IZO)膜。焦点是在基于水的溶剂溶液开发溶液配方,仅具有少量乙酸含量,以及保持基板温度尽可能低 - 在360℃下。因此,该过程环境友好且节能。尽管条件有挑战性,但由此产生的IZO薄膜具有高度透明和导电性。它们的质地强烈地偏离ZnO(002)纹理,并取决于铟含量,这也影响电阻率。后者占铟浓度为4at。溶液中的最小浓度,并降低薄膜厚度的增加,达到(5.0 +/- 0.1)×10(-3)A“破损的垂直条Cm,主要是由于为了增加载流动性。发现高剂量UV辐射后电阻率的稳定性与载体密度和膜厚度增加。即使在12.1kJ / cm的总剂量后,厚的高掺杂薄膜也显示出最小的电阻率改性(2)UVA / UVB辐照。最后,为了证明其在装置中的适用性,IZO电极用于制造引线钙钛矿吸收器太阳能电池,产生6%和910 MV开路电压的能量转换效率。

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  • 来源
    《Journal of Materials Science》 |2017年第14期|共12页
  • 作者单位

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

    AIT Mobil Dept Elect Drive Technol Giefinggasse 2 A-1210 Vienna Austria;

    Graz Univ Technol ICTM NAWI Graz Stremayrgasse 9 A-8010 Graz Austria;

    AIT Dept Energy Photovolta Syst Giefinggasse 2 A-1210 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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