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Characterization and application of rapid thermal oxide surface passivation for the highest efficiency RTP silicon solar cells

机译:快速热氧化物表面钝化对最高效率RTP硅太阳能电池的表征及应用

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This paper presents the development and analysis of the first 19%-efficient silicon solar cells fabricated by rapid thermal processing (RTP). These cells required no high-temperature conventional furnace processing (CFP). Improved front surface passivation by rapid thermal oxidation (RTO) was found to reduce S/sub front/ from 7.5/spl times/10/sup 5/ to 2/spl times/10/sup 4/ cm/s, decrease J/sub 0e/ by almost an order of magnitude, and increase cell efficiency by about 1% (absolute). An additional 1% gain in efficiency was achieved by applying a thicker screen-printed, RTP-alloyed Al-BSF instead of the standard 1 /spl mu/m evaporated Al-BSF. Because of the rapid heating rate in RTP, the RTP Al-BSF also gives a more uniform and effective BSF compared with the CFP Al-BSF. In comparison with furnace processed cells, this RTP/RTO process reduced the time for diffusion and oxidation from 330 to 10 min without sacrificing efficiency. To reduce back surface recombination further, RTO can be grown on the back. PCD characterization of RTO on 1.3 /spl Omega/cm Si reveals an S/sub back/ well below 100 cm/s, which can result in 20% efficient RTP/RTO cells.
机译:本文介绍了通过快速热处理(RTP)制造的前19%效率的硅太阳能电池的开发和分析。这些细胞不需要高温常规炉处理(CFP)。发现通过快速热氧化(RTO)改善前表面钝化,以减少S / SUP前/从7.5 / SPL时间/ 10 / SOP 5 /〜2 / SPL时间/ 10 / SUP 4 / cm / s,减少J / SUP 0e /几乎是一个数量级,并增加细胞效率约1%(绝对)。通过施加较厚的丝网印刷的RTP合金Al-BSF而不是标准的1 / SPL mu / m蒸发的Al-BSF来实现额外的1%的效率增益。由于RTP中的快速加热速率,与CFP Al-BSF相比,RTP Al-BSF还给出了更均匀和有效的BSF。与炉加工细胞相比,该RTP / RTO工艺在不牺牲效率的情况下将扩散和氧化的时间减少到10分钟。为了进一步减少后表面重组,可以在背面生长RTO。 1.3 / SPLω/ cm Si的RTO的PCD表征揭示了S / sub返回/良好低于100cm / s,这可能导致<20%的效率RTP / RTO细胞。

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