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Rapid Fabrication of Cu(In,Ga)Se$_{2}$ Thin Films by the Two-Step Selenization Process

机译:两步硒化法快速制备Cu(In,Ga)Se $ _ {2} $薄膜

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摘要

Two-step processes currently used for the industrial Cu(In,Ga)Se $_{2}$ (CIGS) module production require a long process time of several hours for the CIGS absorber formation. In this paper, we are studying the reaction pathway to rapid selenization of stacked metal precursors in elemental Se vapor. The objective is to understand the reaction kinetics to find the best precursor structure and the optimal selenization conditions to form high-quality CIGS films with proper Ga depth profiles. In addition to stacked metal precursors, the effect of the use of Se-containing precursors was also examined. As expected, the stacking order of the metal precursors influences the properties of the resulting CIGS absorbers. The Cu amount deposited for the precursor formation critically affected the final film and cell properties, as well. We also found that the formation of CIGS films with large grain sizes and flat Ga depth profiles was possible even for [Cu]/([In] + [Ga]) < 1 conditions with the use of particular precursor structures and selenization conditions. The results suggest that the selenization reaction pathway can be dictated with the precursor structure, and further improvements are expected by controlling reaction kinetics with precursor structure modification.
机译:当前用于工业Cu(In,Ga)Se $ _ {2} $(CIGS)模块生产的两步工艺需要几小时的长时间才能形成CIGS吸收剂。在本文中,我们正在研究元素硒蒸气中堆叠金属前驱物快速硒化的反应途径。目的是了解反应动力学,以找到最佳的前驱体结构和最佳的硒化条件,以形成具有适当Ga深度分布的高质量CIGS膜。除了堆叠的金属前体之外,还检查了使用含硒前体的效果。不出所料,金属前体的堆积顺序会影响所得CIGS吸收剂的性能。用于前体形成的铜沉积量也严重影响了最终的薄膜和电池性能。我们还发现,即使使用特殊的前体结构和硒化条件,即使[Cu] /([In] + [Ga])<1条件,也可能形成具有大晶粒尺寸和平坦Ga深度分布的CIGS膜。结果表明,硒化反应途径可以由前体结构决定,并且期望通过控制具有前体结构修饰的反应动力学来进一步改善。

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