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Front-Side Ag Contacts Enabling Superior Recombination and Fine-Line Performance

机译:前侧AG触点可以实现卓越的重组和细线性能

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The standard silicon solar cell process continues on an evolutionary improvement path. High quality monocrystalline cells are now able to reach 19.2 % conversion efficiencies in industrial production. A key enabler for these high efficiencies has been the front-side Ag contact. This paper will discuss recent developments in this technology on two parallel fronts: reduced recombination and fine line printing. Front-side Ag can reduce solar cell recombination currents directly through reduced metal contact saturation current. In addition front-side Ag can indirectly lower recombination through improved contact formation to low saturation current emitters (lightly doped emitters, or LDE). Through improvements in the frit chemistry a superior recombination performance was enabled, yielding a 3 mV Voc gain and 0.1 % efficiency gain over the control. Improvements in the Ag particle dimensions and paste rheology reduced the optimum finger width approximately 10 μm, increasing Jsc by 0.3 mA/cm~2 improving the efficiency gain another 0.1 % over the incumbent technology. In net we are able to demonstrate a next generation front-side Ag paste that can improve efficiency 0.2 %, from 18.8 % to 19.0 %.
机译:标准硅太阳能电池过程继续进化改进路径。高质量的单晶细胞现在能够达到19.2%的工业生产转换效率。这些高效率的关键推动器已经是前侧AG接触。本文将讨论这项技术的最新发展在两个平行的前端:减少的重组和细线印刷。前侧AG可以通过降低的金属接触饱和电流直接降低太阳能电池复合电流。此外,前侧AG可以通过改进的接触形成到低饱和电流发射器(轻微掺杂发射器或LDE)间接降低重组。通过改善玻璃料化学,使得能够进行高度的重组性能,得到3mV VOC增益和对照的效率增益0.1%。 Ag粒子尺寸的改善和糊状流变减少了大约10μm的最佳手指宽度,JSC增加0.3 mA / cm〜2,提高效率在现有技术上增加0.1%。在网中,我们能够展示下一代前侧AG粘贴,可以提高效率0.2%,从18.8%到19.0%。

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