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Silicon Solar Cells on Glass with Power Conversion Efficiency above 13 at Thickness below 15 Micrometer

机译:厚度小于15微米时功率转换效率高于13%的玻璃上的硅太阳能电池

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摘要

Liquid phase crystallized silicon on glass with a thickness of (10–40) μm has the potential to reduce material costs and the environmental impact of crystalline silicon solar cells. Recently, wafer quality open circuit voltages of over 650 mV and remarkable photocurrent densities of over 30 mA/cm2 have been demonstrated on this material, however, a low fill factor was limiting the performance. In this work we present our latest cell progress on 13 μm thin poly-crystalline silicon fabricated by the liquid phase crystallization directly on glass. The contact system uses passivated back-side silicon hetero-junctions, back-side KOH texture for light-trapping and interdigitated ITO/Ag contacts. The fill factors are up to 74% and efficiencies are 13.2% under AM1.5 g for two different doping densities of 1 · 1017/cm3 and 2 · 1016/cm3. The former is limited by bulk and interface recombination, leading to a reduced saturation current density, the latter by series resistance causing a lower fill factor. Both are additionally limited by electrical shading and losses at grain boundaries and dislocations. A small 1 × 0.1 cm2 test structure circumvents limitations of the contact design reaching an efficiency of 15.9% clearly showing the potential of the technology.
机译:玻璃上厚度为(10-40)μm的液相结晶硅具有降低材料成本和结晶硅太阳能电池对环境的影响的潜力。最近,已证明该材料具有超过650 mV的晶片质量开路电压和超过30 mA / cm 2 的显着光电流密度,但是低填充系数限制了其性能。在这项工作中,我们介绍了我们在通过玻璃直接液相结晶制造的13μm薄多晶硅上的最新电池研究进展。接触系统使用钝化的背面硅异质结,背面KOH纹理用于光陷获和叉指式ITO / Ag接触。对于两种不同的掺杂密度1·10 17 / cm 3 和2·10 <,在AM1.5 g下,填充因子高达74%,效率为13.2%。 sup> 16 / cm 3 。前者受体积和界面复合的限制,导致饱和电流密度降低,后者受串联电阻的影响,导致填充系数降低。两者还受到电阴影和晶界和位错损失的限制。一个小的1××0.10.1cm 2 测试结构克服了触点设计的局限性,效率达到15.9%,清楚地表明了该技术的潜力。

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