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首页> 外文期刊>Photovoltaics, IEEE Journal of >20.3% MWT Silicon Heterojunction Solar Cell—A Novel Heterojunction Integrated Concept Embedding Low Ag Consumption and High Module Efficiency
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20.3% MWT Silicon Heterojunction Solar Cell—A Novel Heterojunction Integrated Concept Embedding Low Ag Consumption and High Module Efficiency

机译:20.3%MWT硅异质结太阳能电池—集成了低银消耗和高模块效率的新型异质结集成概念

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摘要

In this paper, we present the successful integration of a silicon heterojunction (HJ) solar cell with metal wrap through (MWT) architecture. This MWT-HJ cell and module technology combines all the advantages of the individual concepts. With this contribution, we demonstrate a record device efficiency of 20.3% achieved using commercial n-type Cz 6-in wafers. To our knowledge, this is the first time cell results for MWT-HJ architecture have been reported. We put this result in perspective, providing a solution for the reduced conductivity of low-temperature silver pastes used for HJ cell fabrication. We propose a method to further increase the solar cell performance up to , together with a 50% cost of ownership reduction of the front contact silver, including via and conductive adhesive at the rear. This is possible solely by the optimization of the front metal grid in this MWT structure predicting efficiencies above 21%. MWT-HJ is a fully low-temperature integrated cell and module concept and is also compatible with next-generation thinner wafers.
机译:在本文中,我们介绍了硅异质结(HJ)太阳能电池与金属缠绕(MWT)架构的成功集成。这种MWT-HJ电池和模块技术结合了各个概念的所有优点。凭借这一贡献,我们证明了使用商用n型Cz 6英寸晶圆可达到20.3%的创纪录器件效率。据我们所知,这是首次报道了MWT-HJ体系结构的单元结果。我们将此结果放在透视图上,为降低用于HJ电池制造的低温银浆的电导率提供了解决方案。我们提出了一种进一步提高太阳能电池性能的方法,同时将前触点银(包括后部的通孔和导电胶)的拥有成本降低了50%。仅通过优化此MWT结构中的前金属格栅(预测效率高于21%),这是可能的。 MWT-HJ是完全低温集成的电池和模块概念,并且还与下一代更薄的晶圆兼容。

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