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首页> 外文期刊>Advances in OptoElectronics >Rapid Thermal Annealing and Hydrogen Passivation of Polycrystalline Silicon Thin-Film Solar Cells on Low-Temperature Glass
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Rapid Thermal Annealing and Hydrogen Passivation of Polycrystalline Silicon Thin-Film Solar Cells on Low-Temperature Glass

机译:低温玻璃上的多晶硅薄膜太阳能电池的快速热退火和氢钝化

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摘要

The changes in open-circuit voltage (Voc), short-circuit current density (Jsc), and internal quantum efficiency (IQE) of aLuminum induced crystallization, ion-assisted deposition (ALICIA) polycrystalline silicon thin-film solar cells on low-temperature glass substrates due to rapid thermal anneal (RTA) treatment and subsequent remote microwave hydrogen plasma passivation (hydrogenation) are examined.Vocimprovements from 130 mV to 430 mV,Jscimprovements from 1.2 mA/cm2to 11.3 mA/cm2, and peak IQE improvements from 16% to>70% are achieved. A 1-second RTA plateau at 1000°C followed by hydrogenation increases theJscby a factor of 5.5. Secondary ion mass spectroscopy measurements are used to determine the concentration profiles of dopants, impurities, and hydrogen. Computer modeling based on simulations of the measured IQE data reveals that the minority carrier lifetime in the absorber region increases by 3 orders of magnitude to about 1 nanosecond (corresponding to a diffusion length of at least 1 μm) due to RTA and subsequent hydrogenation. The evaluation of the changes in the quantum efficiency andVocdue to RTA and hydrogenation with computer modeling significantly improves the understanding of the limiting factors to cell performance.
机译:低温下铝诱导的结晶,离子辅助沉积(ALICIA)多晶硅薄膜太阳能电池的开路电压(Voc),短路电流密度(Jsc)和内部量子效率(IQE)的变化对玻璃进行了快速热退火(RTA)处理并随后进行了远距离微波氢等离子体钝化(加氢)处理。对玻璃基板的改善从130 mV提升至430 mV,J改善了1.2 mA / cm2至11.3 mA / cm2,IQE峰值改善了16%达到> 70%。在1000°C下1秒RTA稳定期,然后进行氢化,将Jsc提高5.5倍。二次离子质谱法测量用于确定掺杂剂,杂质和氢的浓度曲线。基于对测得的IQE数据进行模拟的计算机建模表明,由于RTA和随后的氢化作用,吸收区中的少数载流子寿命增加了3个数量级,达到约1纳秒(相当于至少1μm的扩散长度)。利用计算机模型评估量子效率和因RTA和氢化产生的变化显着提高了对电池性能限制因素的理解。

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