异质结
材料科学
兴奋剂
工作职能
量子隧道
光电子学
透明导电膜
氧化物
硅
薄膜
载流子
纳米技术
图层(电子)
冶金
作者
Christoph Messmer,Martin Bivour,Christoph Luderer,Leonard Tutsch,Jonas Schön,Martin Hermle
标识
DOI:10.1109/jphotov.2019.2957672
摘要
Minimizing transport losses in novel solar cells concepts is often linked to improvements at the TCO / doped silicon contact. A detailed understanding of the determining factors for an efficient transport at this heterojunction is essential, such as work function matching and efficient tunneling transport. We analyze the different TCO contact parameters experimentally and by numerical device simulations. We show that work function matching by using a proper interlayer (e.g. WOx) can be an effective means to improve the fill factor of silicon heterojunction solar cells. However, we showcase that an improved work function matching achieved by changing the doping of a TCO (ITO) interlayer can be superimposed by a less efficient tunneling transport, e.g. due to an interfacial oxide. Furthermore, we show that for n-TOPCon an unintentionally grown oxide at the TCO/poly-Si contact could be a possible explanation for recently observed transport losses.
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