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The effect of firing temperature profiles for the high efficiency of crystalline Si solar cells

机译:烧成温度曲线对晶体硅太阳能电池高效率的影响

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摘要

In the mass production of crystalline Si solar cell, metallization is a very important process because it strongly affects various properties of the solar cell, such as I-sc, V-oc, R-s, R-sh, and FF. However, it is not easy to optimize the firing process because it has to be changed with the diffusion process. In this research, we examined the influence of firing conditions on different R-sheet emitters by varying the sheet resistance from 30 to 60 Omega/sq. The peak temperature and ramp-up rate during the firing process were varied by changing belt speeds and were also varied by changing the temperature settings in different belt furnace zones. As the grid pattern of the front electrode has a significant influence on R-s and FF, we optimized the front grid pattern for each R-sheet emitter. With an increase in the R-sheet of the emitters, V-oc was slightly decreased, as the dopant concentration decreased in the emitter. However, I-sc was increased to a higher degree, which was ascribed to the improvement of blue-response and the reduction of recombination in the front surface. For the same R-sheet of emitters, BSF layers and ohmic contacts were established distinctly at the faster firing condition, which led to a V-oc of around 622 mV and FF of 80.6% by Suns-V-oc measurement. Using the result, we were able to obtain an optimized firing process window for improving V-oc and FF with different R-sheet emitters. These optimized conditions can be applied to the mass production of crystalline Si solar cells.
机译:在晶体硅太阳能电池的批量生产中,金属化是非常重要的过程,因为金属化会严重影响太阳能电池的各种特性,例如I-sc,V-oc,R-s,R-sh和FF。然而,优化烧制过程并不容易,因为必须随扩散过程进行改变。在这项研究中,我们通过将薄层电阻从30 Omega /sΩ改变为60来检查了发射条件对不同R-sheet发射器的影响。焙烧过程中的峰值温度和升温速率通过改变皮带速度来改变,并且还可以通过改变不同带式炉区域中的温度设置来改变。由于前电极的网格图案对R-s和FF有重大影响,因此我们为每个R-sheet发射器优化了前网格图案。随着发射极R片的增加,V-oc略有降低,因为发射极中的掺杂剂浓度降低。但是,I-sc的增加程度较高,这归因于蓝色响应的改善和前表面重组的减少。对于相同的发射极R-sheet,BSF层和欧姆接触在较快的点火条件下得到了明显建立,这通过Suns-V-oc测量得到了622 mV的V-oc和FF的80.6%。使用该结果,我们能够获得优化的点火过程窗口,以改进具有不同R-sheet发射器的V-oc和FF。这些优化的条件可以应用于晶体硅太阳能电池的批量生产。

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