优化金属浆料提高太阳能电池效率

Soon-gil Kim, In-jae Lee, Sang-gon Kim, Jun-phill Eom, Jin-gyeong Park, Sun-mi Lee, Kyoung-hoon Chai, Joo-won Lee
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引用次数: 1

摘要

铝背导体浆料对太阳能电池的性能起着至关重要的作用。太阳能电池的转换效率取决于铝浆料的性质。为了提高电池效率,必须通过改变铝导体层的厚度或组成来控制电池的背表面场特性。随着厚度的增加,BSF的厚度也随之提高。铝粉、玻璃熔块的玻璃化转变温度(Tg)和无机添加剂对BSF性能也有影响。然而,对于薄晶片来说,随着Al用量的增加而产生的弯曲(或烧结应力)会导致Al膏体的形成。本工作通过实验和理论研究了硅晶片弯曲与Al用量的关系。通过改变玻璃熔块和添加无机添加剂来控制铝背导体浆料的组成。采用扫描电镜(SEM)对其表面形貌和BSF均匀性进行了表征。虽然铝的用量增加了,但薄硅片的厚度仍然低于商业要求,并且获得了相同的电池效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the solar cell efficiency with optimized metal paste
Aluminum (AT) back conductor paste plays an important role in the performance of the solar cells. The conversion efficiency of the solar cell depends on the properties of the Al paste. To increase the cell efficiency, the back surface field (BSF) properties should be carefully controlled by changing the thickness or the composition of Al conductor layer. As the thickness is to be thicker, BSF thickness is improved. Al powder, glass transition temperature (Tg) of glass frit, and inorganic additives are also affected the BSF properties. However, for a thin wafer, Al paste should be developed due to the bow (or sintering stress), which is generated with increasing the amount of Al. In this work, the correlation between the Si wafer bow and the amount of Al has been investigated experimentally and theoretically. The composition of back Al conductor paste was carefully controlled by changing the glass frits and adding the inorganic additives. The surface morphology and BSF uniformity were characterized by scanning electron microscopy (SEM). Although the amount of Al was increased, the bow of a thin Si wafer still remained lower than a commercial requirement, and same cell efficiency was obtained.
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