Contact shadowing losses reduction by fine line screen printing

M. Butturi, M. Stefancich, D. Vincenzi, G. Martinelli, L. Pirozzi, G. Arabito, M. Izzi, P. Mangiapane
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引用次数: 5

Abstract

Aim of this work is to transfer high efficiency concepts to large-scale crystalline silicon solar cell production, which is based on screen printing technology. The achievable cell efficiency obtainable by this technique is strongly affected by the limitation due to the contact shadowing losses necessary for reaching high Fill Factor values; indeed highest the FF, highest the surface coverage. An appealing way to overcome this limitation is to join screen printing to buried contact technology to get high aspect ratio grid pattern and, at the same time, a high FF value. Moreover this technology allows to easily define a selective emitter. Keeping to this purpose high resolution polymer screens or stencils with variable thickness have been tested. Both this steps have been obtained by adjusting the conventional screen printing process.
通过细线丝网印刷减少接触阴影损失
这项工作的目的是将高效率的概念转移到基于丝网印刷技术的大规模晶体硅太阳能电池生产中。由于达到高填充因子值所必需的接触阴影损失,该技术可实现的电池效率受到限制的强烈影响;FF越高,表面覆盖率越高。克服这一限制的一种有吸引力的方法是将丝网印刷与埋触技术结合起来,以获得高纵横比的网格图案,同时获得高FF值。此外,该技术允许容易地定义一个选择性发射极。为了达到这一目的,高分辨率的可变厚度聚合物屏幕或模板已经进行了测试。这两个步骤都是通过调整常规丝网印刷工艺而获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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