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Corrosion behavior of crystalline silicon solar cells

机译:晶体硅太阳能电池的腐蚀行为

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Corrosion behavior of crystalline silicon (C-Si) solar cells was investigated. For this purpose, three groups of cells were conducted with three kinds of aging test which cells setting in indoor environment (25 degrees C, 45% RH, 0- 2 months), cells immersing in moisture atmosphere (25 degrees C, 85% RH, 0- 240 h) and cells immersing in acetic acid atmosphere (25 degrees C, 85% RH, 0- 240 h). Subsegliently the microstructure characteristic of the alumina paste layer (APL), rear electrode and soldered connection of cells and the corrosion production during aging test were analyzed and compared. The results show that the smooth oxide coating and looser structure were found in the APL of cell after aging test. In addition the discoloration and elements diffusion were found on the rear electrode. And the corrosion region expanded gradually from the edge to the center of soldered connection along the interface between Ag electrode and Sn37Pb alloy. Thereafter, a model was put forward to try to explain the degradation mechanism of traditional photovoltaic (PV) modules during damp-heat (DH) test based on corrosion behavior of C-Si cells in this experiment. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了晶体硅(C-Si)太阳能电池的腐蚀行为。为此,对三组电池进行了三种老化测试:将其放置在室内环境中(25摄氏度,45%相对湿度,0- 2个月),将其浸入潮湿的环境中(25摄氏度,85%相对湿度) ,0-240小时),将细胞浸入乙酸气氛(25摄氏度,相对湿度85%,0-240小时)中。在此基础上,分析比较了铝浆层(APL),背面电极和电池的焊接连接以及时效试验中产生腐蚀的微观结构特征。结果表明:老化后电池的APL中发现了光滑的氧化物涂层和较疏松的结构。另外,在后电极上发现了变色和元素扩散。腐蚀区域沿着银电极与Sn37Pb合金的界面从边缘到焊接连接的中心逐渐扩大。此后,提出了一个模型,试图根据本实验中C-Si电池的腐蚀行为来解释传统光伏(PV)组件在湿热(DH)测试期间的降解机理。 (C)2017 Elsevier Ltd.保留所有权利。

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