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FORMATION OF A CONDUCTIVE GRID ON THIN FILM MODULES GLASS BY LASER-PATTERNING

机译:通过激光图案形成在薄膜模块玻璃上形成导电网格

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In thin film solar modules, transparent conductive oxides (TCOs) are commonly used as a front contact. The limited electrical conductivity and optical transparency of TCOs reduce the efficiency of thin film, modules, so a Compromise must be achieved between low-light absorption and good electrical conduction. In this work a new method for increasing the electrical-conductivity of TCO films and maintaining high optical transparency in solar modules by creating micron-sized metalized grooves in the substrate,is presented. The grooves were machined into the glass substrate using a 266 nm pulsed UV laser and a relevant optical setup. Initial results show that ultra-fine gridlines down to 10 gm' width- with fully metalized sidewalls can be achieved. This is a factor of ten smaller than the gridlines produced by screen-printing. This paper presents the procedures for masking, laser processing and metallization and analyzes the impact this technique would have on solar cell performance.
机译:在薄膜太阳能模块中,透明导电氧化物(TCOS)通常用作前触点。 TCO的电导率有限和光学透明度降低了薄膜,模块的效率,因此在低光吸收和良好的电导之间必须实现折衷。在这项工作中,提出了一种提高TCO薄膜电导率和通过在基板中产生微米尺寸的金属化槽来增加太阳能模块的高光学透明性的新方法。使用266nm脉冲UV激光器和相关光学设置将凹槽加工到玻璃基板中。初始结果表明,可以实现超细栅径下降到10克的宽度 - 具有完全金属化侧壁的宽度。这比丝网印刷产生的网格线小一个。本文介绍了掩蔽,激光加工和金属化的程序,分析了这种技术对太阳能电池性能的影响。

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