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Improvement of Crystallinity and Solar Cell Efficiency of Spherical Silicon by Seeding Crystallization Techniques

机译:通过晶种结晶技术提高球形硅的结晶度和太阳能电池效率

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Silicon spheres were fabricated from melted silicon by dropping method. In order to improve the quality of silicon spheres, we developed a novel seeding crystallization technique for the solidification of silicon droplets in high-speed dropping. High-pure silicon powders were used as seeding source material. They were embedded into the silicon droplets by floating and confining within a specific region on the dropping route. Experimental results demonstrated that this method is very effective on improving the crystalline quality and on reducing the defects and dislocations of the silicon spheres. A solar cell module having about 4x lens concentrator was developed without polishing the spheres. A conversion efficiency of 11.3% under AM1.5, 100 mW/cm2 sunlight was achieved from single sphere with size of 1.0 mm in diameter
机译:硅球是由熔化的硅通过滴落法制成的。为了提高硅球的质量,我们开发了一种新型的晶种结晶技术,用于在高速滴下固化硅滴。高纯硅粉被用作种子源材料。通过在滴落路径上的特定区域内浮动和限制,将它们嵌入到硅滴中。实验结果表明,该方法在提高晶体质量,减少硅球的缺陷和位错方面非常有效。在不抛光球体的情况下开发了具有约4倍透镜聚光器的太阳能电池模块。从直径为1.0 mm的单个球体在AM1.5、100 mW / cm 2 阳光下的转换效率为11.3%

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