首页> 外文会议>Workshop on Metallization and Interconnection for Crystalline Silicon Solar Cells >Advanced Metallization with Low Silver Consumption for Silicon Heterojunction Solar Cells
【24h】

Advanced Metallization with Low Silver Consumption for Silicon Heterojunction Solar Cells

机译:具有低银消耗的先进金属化硅杂交太阳能电池

获取原文

摘要

In this work, three industry-related metallization approaches for silicon heterojunction (SHJ) solar cells are presented which are aiming for a reduction of silver consumption compared to conventional screen-printing of low-temperature silver pastes. The presented results are achieved on large-area cells (area of 244.3 cm~2). Firstly, the cell results reveal that with silver-coated copper pastes for screen-printing comparable results as with pure silver pastes can be achieved but with a potentially reduced silver consumption of 30%. Median efficiencies of 21.6% are achieved in both cases utilizing a five busbar cell design. A second approach to reduce the silver consumption is the use of inkjet-printing. The influence of the inkjet-printed layer number per contact finger on the cell performance of busbarless cells is investigated. A maximum conversion efficiency of 23.3% of an inkjet-printed solar cell is achieved within this study. Thirdly, a novel printing technology established at Fraunhofer ISE, called FlexTrail-printing, is introduced. By utilizing the same Ag nanoparticle ink like in the case of inkjet-printing, the finger width is reduced from 75 ± 1 μm down to 16 ± 1 μm on alkaline textured SHJ solar cells. To the authors' knowledge, this is the smallest feature size ever published on ITO-coated, textured silicon surfaces. A maximum conversion efficiency of 23.7% is measured (busbarless cell). Only 0.3 ± 0.1 mg Ag nanoparticle ink is consumed during FlexTrail-printing on a large-area wafer with a front grid of 80 fingers.
机译:在这项工作中,介绍了三种与硅杂函数(SHJ)太阳能电池的合作相关的金属化方法,其旨在减少银色消耗与低温银浆料的传统丝网印刷相比。所提出的结果是在大面积电池(面积为244.3cm〜2)上的结果。首先,细胞结果表明,通过与纯银浆料的丝网印刷的丝网印刷的铜浆料可以实现,但潜在地降低银消耗30%。两种情况下,21.6%的中位效率在使用五个母线细胞设计的情况下实现。减少银消耗的第二种方法是使用喷墨印刷。研究了喷墨印刷层数对手指对母线细胞的电池性能的影响。在该研究中,实现了23.3%的喷墨印刷太阳能电池的最大转换效率。第三,介绍了在Fraunhofer Ise建立的新型印刷技术,称为Flextrail-Printing。通过在喷墨印刷的情况下利用相同的Ag纳米粒子墨水,在碱性纹理SHJ太阳能电池上,手指宽度从75±1μm降至16±1μm。对于作者的知识,这是在ITO涂层,纹理硅表面上发表的最小特征大小。测量最大转换效率为23.7%(母线单元)。在具有80个手指的前网的大区域晶片上,仅在柔性刀片印刷期间仅消耗0.3±0.1mg纳米粒子油墨。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号