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HPM silicon: The next generation of multicrystalline silicon for PV

机译:HPM Silicon:PV的下一代多晶硅硅

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High-performance multicrystalline (HPM) silicon, achieved by nucleation on special seed layers at the crucible bottom, is now increasingly replacing conventional multicrystalline (mc) silicon, which is solidified on the standard silicon nitride coating. The HPM material is characterized by a very fine initial grain structure consisting of small, regularly shaped grains surrounded by a large number of random-angle grain boundaries. These grain structure properties, which differ significantly from those of conventional multicrystalline silicon, lead to a much lower dislocation content in the material, and therefore result in higher efficiencies of the silicon solar cells produced. This paper gives a rough overview of the worldwide R&D activities on HPM silicon in recent years, supplemented by several research results obtained at Fraunhofer IISB/THM. The focus is on the different seeding methods, the grain structure properties and the development of the grain and defect structure over the ingot height, as well as on the main challenges for further improvements in material quality and production costs.
机译:通过在坩埚底部的特殊种子层上成核来实现的高性能多晶硅(HPM)硅,现在越来越多地替代传统的多晶硅(MC)硅,其在标准氮化硅涂层上凝固。 HPM材料的特征在于由由大量随机角晶界围绕的小,规则形状的颗粒组成的非常精细的初始晶粒结构。这些晶粒结构性能显着不同于常规多晶硅硅的性质,导致材料中的脱位含量较低,因此导致产生的硅太阳能电池的效率更高。本文近年来,近年来,近年来迅速概述了HPM硅的全球研发活动,补充了在Fraunhofer IISB / THM获得的几项研究结果。重点是在不同的播种方法,晶粒结构性能和晶粒和缺陷结构的发展,以及铸造高度的主要挑战,以进一步改善材料质量和生产成本。

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