Hsu Chia-Hsun, Yang Chih-Hsiang, Wang Yi-Han, Huang Chun-Wei, Lien Shui-Yang, Kung Chung-Yuan, Lou Jen-Chung
Department of Materials Science and Engineering, Da-Yeh University, Chunghua 51591, Taiwan.
Department of Electrical Engineering, National Chung Hsing University, Taichung 40227, Taiwan.
Materials (Basel). 2016 Jul 8;9(7):549. doi: 10.3390/ma9070549.
The passivated emitter and rear cell (PERC) concept is one of the most promising technologies for increasing crystalline silicon solar cell efficiency. Instead of using the traditional laser ablation process, this paper demonstrates spin-coated polystyrene spheres (PS) to create local openings on the rear side of PERCs. Effects of PS concentration and post-annealing temperature on PERC performance are investigated. The experimental results show that the PS are randomly distributed on wafers and no PS are joined together at a spin rate of 2000 rpm. The PS can be removed at a temperature of 350 °C, leaving holes on the passivation layers without damaging the wafer surfaces. As compared to the laser opening technique with the same contact fraction, the PS opening technique can yield a higher minority effective lifetime, a higher implied open-circuit voltage, and a slightly higher short-circuit current. Although the fill factor of the PS opening technique is lower owing to non-optimized distribution of the openings, the conversion efficiency of the devices is comparable to that of devices prepared via the laser opening process.
钝化发射极及背接触电池(PERC)概念是提高晶体硅太阳能电池效率最具前景的技术之一。本文展示了使用旋涂聚苯乙烯球(PS)而非传统的激光烧蚀工艺在PERC电池背面制造局部开口。研究了PS浓度和退火后温度对PERC电池性能的影响。实验结果表明,在2000转/分钟的转速下,PS随机分布在晶圆上,且没有PS相互连接在一起。PS可在350°C的温度下去除,在钝化层上留下孔洞而不损坏晶圆表面。与具有相同接触比例的激光开口技术相比,PS开口技术可产生更高的少数载流子有效寿命、更高的隐含开路电压以及略高的短路电流。尽管由于开口分布未优化,PS开口技术的填充因子较低,但器件的转换效率与通过激光开口工艺制备的器件相当。