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Development of back-junction back-contact silicon solar cells based on industrial processes

机译:基于工业过程的后交接收硅太阳能电池的开发

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We have presented simplified industrial processes to fabricate high performance back-junction back-contact (BJBC) silicon solar cells. Good optical surface structures (solar averaged reflectance 2.5%) and high implied open-circuit voltage (0.695V) have been realized in the BJBC cell precursors through wet chemical processing, co-diffusion, P ion implantation and annealing oxidation, as well as laser patterning and plasma enhanced chemical vapour deposition passivation processes. We have achieved a certified high efficiency of close to 22% on BJBC silicon solar cells with the size of 4.04cm(2) by using screen printing and co-firing technologies. The manufacturing process flow further successfully yields efficiency of around 21% BJBC silicon solar cells with enlarged sizes of 6x6cm(2). The present work has demonstrated that the commercialization of low-cost and high-efficiency BJBC solar cells is possible because we have used processes compatible with existing production lines. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:我们介绍了简化的工业过程,以制造高性能后隙反向接触(BJBC)硅太阳能电池。通过湿化学加工,共传播,P离子注入和退火氧化,在BJBC细胞前体中实现了良好的光学表面结构(太阳平均反射率2.5%)和高隐含的开路电压(0.695V)。以及激光图案化和等离子体增强化学气相沉积钝化方法。通过使用丝网印刷和共用技术,我们在BJBC Silicon太阳能电池上达到了近22%的认证高效率接近22%,尺寸为4.04cm(2)。制造过程流动进一步成功地产生大约21%BJBC硅太阳能电池的效率,其尺寸为6×6CM(2)。目前的工作表明,低成本和高效BJBC太阳能电池的商业化是可能的,因为我们使用与现有生产线兼容的工艺。版权所有(c)2017 John Wiley&Sons,Ltd。

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