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Microcrystalline/micromorph silicon thin-film solar cells prepared by VHF-GD technique

机译:通过VHF-GD技术制备的微晶/微晶硅硅薄膜太阳能电池

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摘要

Hydrogenated microcrystalline silicon prepared at low temperatures by the glow discharge technique is examined here with respect to its role as a new thin-film photovoltaic absorber material. XRD and TEM characterisations reveal that microcrystalline silicon is a semiconductor with a very complex morphology. Microcrystalline p–i–n cells with open-circuit voltages of up to 560–580 mV could be prepared. “Micromorph” tandem solar cells show under outdoor conditions higher short-circuit currents due to the enhanced blue spectra of real sun light and therefore higher efficiencies than under AM1.5 solar simulator conditions. Furthermore, a weak air mass dependence of the short-circuit current density could be observed for such micromorph tandem solar cells. By applying the monolithic series connection based on laser patterning a first micromorph mini-module (total area of 23.6 cm) with 9% cell conversion efficiency could be fabricated.
机译:本文就通过辉光放电技术在低温下制备的氢化微晶硅作为新型薄膜光伏吸收材料的作用进行了研究。 XRD和TEM表征表明,微晶硅是一种形态非常复杂的半导体。可以制备开路电压高达560-580 mV的微晶p-i-n电池。 “微晶型”串联太阳能电池在室外条件下表现出更高的短路电流,这是由于真实太阳光的蓝色光谱增强,因此比AM1.5太阳模拟器条件下的效率更高。此外,对于这种微晶型串联太阳能电池,可以观察到空气质量对短路电流密度的依赖性较小。通过应用基于激光图案化的单片串联连接,可以制造出具有9%电池转换效率的第一个微形态微型模块(总面积23.6 cm)。

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