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Photovoltaic and Physical Characteristics of Screen-Printed Monocrystalline Silicon Solar Cells with Laser Doping and Electroplated Copper

机译:具有激光掺杂和电镀铜的丝网印刷单晶硅太阳能电池的光伏和物理特性

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Photovoltaic and physical characteristics of screen-printed monocrystalline silicon solar cells (SPMSCs) were presented with electroplated copper (EPC) as the rear contact. The boron back surface field (B-BSF) formed by spin-on doping and laser doping (LD) was prepared as a seed layer for the EPC. The LD parameters, including the laser focus, laser power, laser speed, and laser line pitch, were investigated. Moreover, the effects of KOH etching on the surface properties after the LD process were explored. Furthermore, to enhance the adhesion between the B-BSF seed layer and EPC contact layer, a laser pinhole process was proposed. Finally, the EPC processes with various electroplating times were addressed. The results revealed that the mechanism of enhancements could be attributed to a continuous B-BSF seed layer and a reduction of series resistance, as well as an increase of open-circuit voltage and adhesion between the B-BSF seed layer and EPC contact layer.
机译:丝网印刷单晶硅太阳能电池(SPMSCs)的光伏和物理特性用电镀铜(EPC)作为后接触呈现。通过旋转掺杂和激光掺杂(LD)形成的硼背面(B-BSF)作为EPC的种子层制备。研究了LD参数,包括激光聚焦,激光功率,激光速度和激光线间距。此外,探讨了KOH蚀刻对LD过程后表面性质的影响。此外,为了增强B-BSF种子层和EPC接触层之间的粘合,提出了激光针孔过程。最后,解决了具有各种电镀时间的EPC过程。结果表明,增强机制可归因于连续的B-BSF种子层和串联电阻的降低,以及B-BSF种子层和EPC接触层之间的开路电压和粘附的增加。

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