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Kesterite solar-cells by drop-casting of inorganic sol-gel inks

机译:通过无机溶胶油墨的滴铸造酮太阳能电池

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摘要

The PV research is nowadays focused on finding low cost and easily processable thin-film materials, trying to move towards lighter and more versatile technologies. Among them, Cu2ZnSnS4 (CZTS) drew the attention of the scientific community thanks to its structural similarity to the already reported and well-studied Cu(In,Ga)Se-2 but with the great advantage to use cheap and earth-abundant elements. In this work, we report CZTS-based solar cells produced with a simple and straightforward sol-gel process, demonstrating how further expensive and industrially non-scalable instruments are not needed in order to provide a working device. Direct drop-casting of a precursor solution onto the substrate, followed by gelation and final annealing in Ar atmosphere, generates the desired phase of the material without any further source of sulphur. The precursor solution contains metal acetate salts which play a primary role in networking the metals in the gel matrix, together with thiourea and dimethylsulfoxide. With this methodology, only the strictly necessary amount of reagents is used saving until 2-3 orders of magnitude of starting materials compared to other wet deposition techniques and working devices were obtained showing eta = 1.1%. The addition of KCl as a dopant into the precursor solution was proven to be beneficial for the grain growth and material quality, so the performance of the corresponding devices rises it up to eta = 1.75%. The synthesised thin films have been fully characterised by UV-Vis absorption, mu-Raman, X-ray diffraction and Energy Dispersive Spectroscopy measurements. Their morphology has been investigated by Scanning Electron Microscopy, proving the high quality of the material. The so-produced PV devices with a standard SLG/Mo/CZTS/CdS/ZnO/AZO architecture show interesting and promising results, especially in terms of short circuit current density.
机译:如今,光伏研究所集中于寻找低成本且易于加工的薄膜材料,试图走向更轻,更通用的技术。其中,CU2ZNSS4(CZTS)赞扬科学界的注意力由于其与已经报告的结构相似性和学习良好的CU(GA)SE-2,但具有廉价和地球丰富的元素的优势。在这项工作中,我们报告了用简单方便且直接的溶胶 - 凝胶工艺生产的基于CZTS的太阳能电池,证明了不需要进一步昂贵且工业上不可缩放的仪器以提供工作装置。将前体溶液的直接递推在基材上,然后在Ar气氛中进行凝胶化和最终退火,产生材料的所需相位,而没有任何进一步的硫来源。前体溶液含有金属醋酸盐,其在将凝胶基质中的金属与硫脲和二甲基磺氧基联合起来,在将金属与硫脲和二甲基磺酰克联系起到主要作用。利用这种方法,仅获得了与其他湿沉积技术相比2-3个原料的起始沉积技术和工作装置,仅使用严格必要的试剂量,显示ETA = 1.1%。被证明,将KCl作为掺杂剂加入前体溶液中,有利于晶粒生长和材料质量,因此相应的装置的性能将其上升至ETA = 1.75%。合成的薄膜通过UV-Vis吸收,MU-拉曼,X射线衍射和能量分散光谱测量得到了完全表征。通过扫描电子显微镜检查它们的形态,证明了高质量的材料。具有标准SLG / MO / CZTS / CDS / ZNO / AZO架构的所以生产的PV器件显示有趣和有前途的结果,特别是在短路电流密度方面。

著录项

  • 来源
    《Solar Energy》 |2020年第9期|532-538|共7页
  • 作者单位

    Univ Milano Bicocca Dept Mat Sci Via Cozzi 55 I-20125 Milan Italy|Univ Milano Bicocca Solar Energy Res Ctr MIB SOLAR Via Cozzi 55 I-20125 Milan Italy;

    Queen Mary Univ London Sch Engn & Mat Sci 327 Mile End Rd London E1 4NS England;

    Univ Milano Bicocca Dept Mat Sci Via Cozzi 55 I-20125 Milan Italy|Univ Milano Bicocca Solar Energy Res Ctr MIB SOLAR Via Cozzi 55 I-20125 Milan Italy;

    Univ Milano Bicocca Dept Mat Sci Via Cozzi 55 I-20125 Milan Italy|Univ Milano Bicocca Solar Energy Res Ctr MIB SOLAR Via Cozzi 55 I-20125 Milan Italy;

    Univ Milano Bicocca Dept Mat Sci Via Cozzi 55 I-20125 Milan Italy|Univ Milano Bicocca Solar Energy Res Ctr MIB SOLAR Via Cozzi 55 I-20125 Milan Italy;

    Univ Milano Bicocca Dept Mat Sci Via Cozzi 55 I-20125 Milan Italy|Univ Milano Bicocca Solar Energy Res Ctr MIB SOLAR Via Cozzi 55 I-20125 Milan Italy;

  • 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
  • 中图分类
  • 关键词

    Cu2ZnSnS4; Wet deposition; Alkali passivation; Thin-film solar cells;

    机译:Cu2ZNSS4;湿沉积;碱钝化;薄膜太阳能电池;

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