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Laser-induced forward transfer for improving fine-line metallization in photovoltaic applications

机译:激光诱导的正向转移可改善光伏应用中的细线金属化

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摘要

Grand challenges to create new front metallization techniques in photovoltaic focus considerable attention on laser-induced forward transfer (LIFT) approach. This alternative method aims to overcome the limitations of the well-established and mature screen-printing (SP) technique. Such limitations are for instance restrictions in the grid pattern design, high-temperature steps, and limited aspect ratio of the line contact (Poulain et al. in Appl Surf Sci 257:5241-5244, 2011). Although different new front contact metallization concepts have been studied, most of them require a second print step to increase the volume of the contact (Gao et al. in Proceedings of 25th EU PVSEC conference, 2010; Beaucarne and Schubert in Energy Proc 67:2-12, 2015; Lossen and Matusovsky in Energy Proc 67:156-162, 2015; Green in Phys E 14:65-70, 2002; Lennon et al. in Prog Photovolt Res Appl V21:1454-1468, 2012). As a result, it is desirable to find innovative metallization techniques to improve the cell efficiency without significantly increasing the cost. Although many challenges remain before to obtain high-quality, robust, and high-performance LIFT contact formation, it required a fully theoretical and experimental assessment. This paper presents the results of a study of the LIFT technique in picosecond regime and thick silver pastes to create high-quality conductive lines for photovoltaic applications.
机译:在光伏中创建新的正面金属化技术面临的巨大挑战将注意力集中在激光诱导的正向转移(LIFT)方法上。这种替代方法旨在克服已建立且成熟的丝网印刷(SP)技术的局限性。这样的限制例如是网格图案设计中的限制,高温步骤以及线接触的有限的长宽比(Poulain等人,Appl Surf Sci 257:5241-5244,2011)。尽管已经研究了不同的新型前接触金属化概念,但其中大多数都需要第二步印刷以增加接触量(Gao等在2010年第25届EU PVSEC会议论文集中; Beaucarne和Schubert在Energy Proc 67:2中2015年12月12日; Lossen和Matusovsky在Energy Proc 67:156-162,2015; Green in Phys E 14:65-70,2002; Lennon等人在Prog Photovolt Res Appl V21:1454-1468,2012)。结果,期望找到创新的金属化技术以提高电池效率而不显着增加成本。尽管获得高质量,坚固耐用和高性能的LIFT触头仍面临许多挑战,但仍需要进行全面的理论和实验评估。本文介绍了皮秒级LIFT技术和厚银浆的研究结果,以创建用于光伏应用的高质量导线。

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  • 来源
    《Applied Physics》 |2016年第6期|595.1-595.5|共5页
  • 作者单位

    LP3 UMR 7341, CNRS, Aix Marseille Universite, 13288 Marseille, France;

    LP3 UMR 7341, CNRS, Aix Marseille Universite, 13288 Marseille, France;

    LP3 UMR 7341, CNRS, Aix Marseille Universite, 13288 Marseille, France;

    LP3 UMR 7341, CNRS, Aix Marseille Universite, 13288 Marseille, France;

    LP3 UMR 7341, CNRS, Aix Marseille Universite, 13288 Marseille, France;

  • 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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