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硅基串联太阳能电池中亚电池的中间连接

The Intermediate Connection of Subcells in Si-based Tandem Solar Cells.

作者信息

Zhang Pengfei, Li Caixia, He Mingrui, Liu Ziheng, Hao Xiaojing

机构信息

Australian Centre for Advanced Photovoltaics, School of Photovoltaic and Renewable Energy Engineering, University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Small Methods. 2024 Feb;8(2):e2300432. doi: 10.1002/smtd.202300432. Epub 2023 Aug 2.

Abstract

Tandem solar cells are rationally designed and fabricated by stacking multiple subcells to achieve power conversion efficiency well above the Shockley-Queisser (SQ) limit. There is a large selection pool for the subcell candidates, such as Si, III-V, Kesterite, Perovskite, and organic solar cells. A series of different combinations of these subcells have been successfully demonstrated in practical tandem solar cell devices. However, there has not been a systematic summary of how to connect subcells in a tandem solar cell using a practical, cost-effective, and efficiency-beneficial fashion. In this work, the connection manners of subcells within a tandem cell are classified into three main categories, performing sequential growth, using the physical connection, and applying an intermediate layer, focusing on systematical description of intermediate layers using different materials. The advantages and disadvantages of these connection methods and their applicability to tandem cell types are further elaborated using two typical example models, III-V/Si and Perovskite inclusive tandem cell devices. Eventually, this work can provide useful guidance on how to carry out a suitable intermediate connection in the design of tandem solar cells depending on the selected subcells and device structure.

摘要

串联太阳能电池是通过堆叠多个子电池进行合理设计和制造的,以实现远高于肖克利-奎塞尔(SQ)极限的功率转换效率。子电池候选材料有很多种,如硅、III-V族化合物、硫系化合物、钙钛矿和有机太阳能电池。这些子电池的一系列不同组合已在实际的串联太阳能电池器件中得到成功展示。然而,尚未有关于如何以实用、经济高效且有利于提高效率的方式在串联太阳能电池中连接子电池的系统总结。在这项工作中,串联电池内子电池的连接方式主要分为三大类,即进行顺序生长、使用物理连接和应用中间层,重点是对使用不同材料的中间层进行系统描述。使用III-V/Si和含钙钛矿的串联电池器件这两个典型示例模型,进一步阐述了这些连接方法的优缺点及其对串联电池类型的适用性。最终,这项工作可为根据所选子电池和器件结构在串联太阳能电池设计中如何进行合适的中间连接提供有用的指导。

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