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Structural and chemical investigations of adapted Siemens feed rods for an optimized float zone process

机译:用于优化的浮区区域工艺改编西门子饲料棒的结构和化学研究

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The optimization of the float zone process for industrial application is a promising way to crystallize high purity silicon for high efficiency solar cells with reduced process costs. We investigated two differently produced Siemens rods which should be used as feed material for the float zone process. The aim is to identify and to improve material properties of the feed rods which have a high impact to the float zone process. We show here microstrucrural and chemical analysis comparing feed rods manufactured under standard conditions and under float zone adapted conditions. To resolve the growth behavior of the grains SEM/EBSD mappings are performed at different positions. TEM analyses are used to investigate the interface region between the mono- and the multicrystalline silicon within the Siemens feed rod. Additionally, drilled cores are cut out from the feed rods containing the region of the slim rod. Afterwards, the drilled cores are crystallized with the float zone process. Finally, carbon and oxygen measurements with FT-IR spectrometry on different positions of the crystallized drilled cores of the Siemens feed rods show the influence of the slim rod material to the float zone process.
机译:用于工业应用的浮子区工艺的优化是具有降低的工艺成本的高效太阳能电池的高纯度硅结晶的有希望的方法。我们调查了两个不同产生的西门子杆,其应用作浮子区工艺的饲料材料。目的是识别并改善对浮子区工艺具有高冲击的饲料杆的材料特性。我们展示了Microstrurural和化学分析比较了标准条件下制造的进料棒,并在浮子区域适应条件下。为了解决谷物的生长行为,在不同的位置进行晶粒/ EBSD映射。 TEM分析用于研究西门子饲料杆内的单色和多晶硅硅之间的界面区域。另外,从包含细杆区域的进料杆切出钻孔芯。之后,钻孔芯与浮子区工艺结晶。最后,在西门子饲料杆的结晶钻孔芯的不同位置上用FT-IR光谱测量的碳和氧气测量显示了纤维杆材料对浮子区工艺的影响。

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