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基于同侧电极焊接技术的24厘米单片柔性三结太阳能电池封装模块。

Monolithic 24  cm flexible triple-junction solar cell encapsulated module based on the ipsilateral electrode welding technology.

作者信息

Luo Xiaolong, Long Junhua, Sun Qiangjian, Chen Zhitao, Wu Xiaoxu, Li Xufei, Yu Menglu, Zhao Huyin, Shen Xiaoming, Lu Shulong

出版信息

Appl Opt. 2024 Apr 10;63(11):2815-2821. doi: 10.1364/AO.518102.

Abstract

The inverted metamorphic multi-junction solar cell is anticipated to be widely applied in stratospheric flight because of its exceptional properties of flexibility and light weight. We propose an ipsilateral welding technology based on Ti/Au electrodes to simplify the fabrication process of GaInP/GaAs/InGaAs solar cells and encapsulate large-sized flexible solar cells. After annealing at 200°C for 2 h, the Ti/Au electrode achieved a low specific contact resistivity of 2.9×10 ⋅ . The performance of the ohmic contact remains stable after the thermal cycling tests. The Ti/Au electrode can require less heat input for welding to reduce the risk of microcrack formation of the solar cells. By employment of this electrode, a 24 solar cell achieved a conversion efficiency of 34.74%. A flexible solar cell module with an efficiency of 32.82% under AM 1.5G illumination was obtained by the ipsilateral electrode welding technology.

摘要

倒置变质多结太阳能电池因其具有柔韧性和重量轻的卓越特性,有望在平流层飞行中得到广泛应用。我们提出了一种基于Ti/Au电极的同侧焊接技术,以简化GaInP/GaAs/InGaAs太阳能电池的制造工艺,并封装大型柔性太阳能电池。在200°C下退火2小时后,Ti/Au电极实现了2.9×10 ⋅ 的低比接触电阻率。在热循环测试后,欧姆接触的性能保持稳定。Ti/Au电极焊接所需的热输入较少,可降低太阳能电池形成微裂纹的风险。通过使用这种电极,一个24 太阳能电池实现了34.74%的转换效率。采用同侧电极焊接技术获得了在AM 1.5G光照下效率为32.82%的柔性太阳能电池模块。

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