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Low surface recombination in silicon-heterojunction solar cells with rear laser-fired contacts from aluminum foils

机译:硅异质结太阳能电池中的低表面复合,具有来自铝箔的后激光烧结触点

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摘要

In this study, an approach to create laser-fired contacts from aluminum foils is studied on p-type silicon-heterojunction solar cells. This alternative approach consists of the use of aluminum foils instead of evaporated layers as a metal source and rear electrode for the laser-firing process. A q-switched infrared laser (1064 nm) was employed to create the local point contacts. Quasi-steady-state photoconductance measurements evidenced a limited degradation in the surface passivation quality during the laser-firing process. Heterojunction solar cells fabricated with these rear contacts reached a best conversion efficiency of 18% with a remarkable open-circuit voltage of 690 mV. These values were very close to those of reference devices fabricated with evaporated aluminum layers. This result suggests a similar effect on the rear surface passivation by both contact strategies. However, external quantum efficiency curves revealed a better response from devices with a rear aluminum foil in the near infrared. Optical measurements indicate that this effect can be related to a higher internal reflection at the back surface. Consequently, laser-fired contacts from aluminum foils appear to be a fast and convenient solution for the rear contact of high-efficiency silicon solar cells.
机译:在这项研究中,研究了一种在p型硅-异质结太阳能电池上由铝箔创建激光烧结触点的方法。这种替代方法包括使用铝箔代替蒸发层作为金属源和激光烧制工艺的后电极。使用q开关红外激光(1064 nm)来创建局部点触点。准稳态光电导测量表明,在激光烧制过程中,表面钝化质量的下降有限。使用这些后触点制造的异质结太阳能电池在690 mV的显着开路电压下达到了18%的最佳转换效率。这些值非常接近用蒸发铝层制成的参考器件的值。该结果表明两种接触策略对后表面钝化具有相似的作用。但是,外部量子效率曲线揭示了带有近红外铝箔的设备的响应更好。光学测量表明,这种影响可能与背面较高的内部反射有关。因此,铝箔的激光烧制触点似乎是高效硅太阳能电池后触点的快速便捷解决方案。

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