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Grain-to-Grain Compositional Variations and Phase Segregation in Copper-Zinc-Tin-Sulfide Films

机译:铜锌锡硫化物膜中晶粒间的成分变化和相偏析

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We have performed a rigorous investigation of the structure and composition of individual grains in copper zinc-tin-sulfide (CZTS) films realized by sulfurization of a sputtered metal stack. Although on average close to the ideal CZTS stoichiometry, elemental analysis shows significant grain-to-grain variations in composition. High-resolution Raman spectroscopy indicates that this is accompanied by grain-to-grain structural variations as well. The intensity from the 337 cm(-1) Raman peak, generally assigned to the kesterite phase of CZTS, remains constant over a large area of the sample. On the other hand, signals from secondary phases at 376 cm(-1) (copper-tin-sulfide) and 351 cm(-1) (zinc-sulfide) show significant variation over the same area. These results confirm the great complexity inherent to this material system. Moreover, structural and compositional variations are recognized in the literature as a factor limiting the efficiency of CZTS photovoltaic devices. This study demonstrates how a seemingly homogeneous CZTS thin film can actually have considerable structural and compositional variations at the microscale, and highlights the need for routine microscale characterization in this material system.
机译:我们已经对通过溅射金属堆叠的硫化实现的硫化铜锌锡(CZTS)膜中单个晶粒的结构和成分进行了严格的研究。尽管平均而言接近理想的CZTS化学计量,但元素分析显示其成分之间存在明显的晶粒间差异。高分辨率拉曼光谱表明,这也伴随着晶粒到晶粒的结构变化。通常分配给CZTS的钾长石相的337 cm(-1)拉曼峰的强度在样品的大面积上保持恒定。另一方面,来自次级相的信号在376 cm(-1)(铜-锡-硫化物)和351 cm(-1)(铜-硫化锌)上显示出在同一区域内的显着变化。这些结果证实了该材料系统固有的巨大复杂性。而且,在结构和成分上的变化在文献中被认为是限制CZTS光伏器件效率的因素。这项研究证明了看似均匀的CZTS薄膜实际上如何在微观尺度上具有相当大的结构和组成变化,并强调了在这种材料系统中进行常规微观尺度表征的必要性。

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