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首页> 外文期刊>Nature Communications >Direct evidence for grain boundary passivation in Cu(In,Ga)Se2 solar cells through alkali-fluoride post-deposition treatments
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Direct evidence for grain boundary passivation in Cu(In,Ga)Se2 solar cells through alkali-fluoride post-deposition treatments

机译:通过碱氟化术后治疗Cu(In,Ga)Se2太阳能电池晶界钝化的直接证据

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摘要

The properties and performance of polycrystalline materials depend critically on the properties of their grain boundaries. Polycrystalline photovoltaic materials - e.g. hybrid halide perovskites, copper indium gallium diselenide (CIGSe) and cadmium telluride - have already demonstrated high efficiencies and promise cost-effective electricity supply. For CIGSe-based solar cells, an efficiency above 23% has recently been achieved using an alkali-fluoride post-deposition treatment; however, its full impact and functional principle are not yet fully understood. Here, we show direct evidence for the passivation of grain boundaries in CIGSe treated with three different alkali-fluorides through a detailed study of the nanoscale optoelectronic properties. We determine a correlation of the surface potential change at grain boundaries with the open-circuit voltage, which is supported by numerical simulations. Our results suggest that heavier alkali elements might lead to better passivation by reducing the density of charged defects and increasing the formation of secondary phases at grain boundaries.
机译:多晶材料的性质和性能尺寸依赖于晶界的性质。多晶光伏材料 - 例如杂交卤化物钙锌矿,铜铟镓酶(CIGSE)和碲化镉 - 已经证明了高效率和承诺具有成本效益的电力供应。对于基于CIGSE的太阳能电池,最近使用碱型沉积后处理达到23%以上的效率;但是,它的全部影响和功能原则尚未完全理解。在这里,我们通过对纳米级光电性质的详细研究,显示用三种不同碱氟化物处理的缩醛钝化的直接证据。我们确定具有开路电压的晶界处的表面电位变化的相关性,该开路电压由数值模拟支持。我们的研究结果表明,通过降低带电缺陷的密度并增加晶粒边界的次级阶段的形成,较重的碱性元素可能导致更好的钝化。

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