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The influencing factors and formation mechanism of the dark ring of monocrystal silicon cells

机译:单晶硅电池黑环的影响因素及形成机理

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The formation mechanism of p-type monocrystalline silicon solar cells' dark rings in the electroluminescence images was researched by Fourier transform infrared spectroscopy, minority carrier lifetime mapping, photoluminescence mapping. It is shown that the minority carrier lifetime sharply decreases during the oversaturated interstitial oxygen precipitation. Because the center oxygen concentration and vacancy density are higher than the edge, the center is easier to form the oxygen precipitates. Therefore, the lifetime drops more at the center than the edge which results in the dark rings and solar cell efficiency losses. Except for the oxygen and carbon concentration of the wafer, the dark rings are also related to the thermal process in the cell processing. Furthermore, when the oxygen and carbon concentration are lower than a certain value, the dark rings would be disappeared.
机译:通过傅里叶变换红外光谱,少数载流子寿命图,光致发光图谱研究了电致发光图像中p型单晶硅太阳能电池暗环的形成机理。结果表明,在过饱和的间隙氧析出过程中,少数载流子的寿命急剧下降。因为中心氧浓度和空位密度高于边缘,所以中心更容易形成氧沉淀。因此,寿命在中心处比边缘处下降更多,这导致黑环和太阳能电池效率损失。除了晶片的氧气和碳浓度外,黑环还与电池加工中的热处理有关。此外,当氧和碳的浓度低于一定值时,黑环将消失。

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