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首页> 外文期刊>Bulletin of the Korean Chemical Society >A Comparative Study of Nanoparticle-Ink-Based CIGSSe Thin Film Solar Cells on Different Back Contact Substrates
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A Comparative Study of Nanoparticle-Ink-Based CIGSSe Thin Film Solar Cells on Different Back Contact Substrates

机译:基于纳米墨水的CIGSSe薄膜太阳能电池在不同背接触基板上的比较研究

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摘要

The effect of the back contact electrode in nanoparticle-ink-based CIGSSe solar cells was investigated using different glass substrates with either a fluorine-doped SnO2 (FTO) conducting layer or a molybdenum (Mo) conducting layer. The morphologies, crystal structures, and compositional distributions of the Cu(In (x) Ga1- (x) )(S (y) Se1- (y) )(2)(CIGSSe) films are very similar in spite of the different back contact materials. The observed performances of the solar cell device, however, are somewhat different. The device that was fabricated on the FTO back contact substrate revealed a lower open-circuit voltage ( V (oc)) and fill factor (FF) than the Mo back contact substrate, resulting in lower solar cell efficiencies (6.5% for FTO and 7.4% for Mo). The differences between the behaviors are attributed to the interfacial properties between the CIGSSe film and the back contact electrode.
机译:使用具有氟掺杂的SnO2(FTO)导电层或钼(Mo)导电层的不同玻璃基板,研究了背接触电极在基于纳米粒子墨水的CIGSSe太阳能电池中的作用。尽管背面不同,但Cu(In(x)Ga1-(x))(S(y)Se1-(y))(2)(CIGSSe)膜的形貌,晶体结构和成分分布非常相似接触材料。但是,太阳能电池装置的观察性能有些不同。在FTO背接触基板上制造的器件显示出比Mo背接触基板更低的开路电压(V(oc))和填充系数(FF),从而导致太阳能电池效率更低(FTO为6.5%,而7.4为7.4) %for Mo)。行为之间的差异归因于CIGSSe薄膜和背面接触电极之间的界面特性。

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