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Improvement of Solar Cell Performance After Oxygen Removal by Electron Beam Melting

机译:电子束熔化后氧气去除后的太阳能电池性能的提高

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Two 450 kg multicrystalline silicon ingots were obtained by mixing and melting high purity silicon and silicon from the edges and the bottom of the casted ingots together in a casting furnace. For one of the ingot, the silicon from casted ingots was refined in an electron beam melting furnace to remove oxygen. The oxygen content was reduced from 10 to less than 0.0517 ppmw when silicon was refined at 500 kW with removal efficiency up to 99.429% in the most areas. The life time of the ingot after oxygen removal was measured to be far better than another one, whereas in the central parts the value was almost 6.7 mu s. The efficiencies of both solar cells were initially 17.55% but after 4 h decreased to 17.05% and 15.55%, respectively. The solar cell after oxygen removal shows a better performance in degradation.
机译:通过将高纯度硅和硅和浇铸的铸锭的底部混合在铸造炉中和浇铸的锭块的底部混合和熔化,得到两种450kg多晶硅锭。 对于其中一个锭,从铸锭熔化炉中精制铸造锭的硅以除去氧气。 当硅以500 kW精制时,氧含量从10至小于0.0517ppmW降低,在大部分地区的去除效率高达99.429%。 测量氧去除后铸锭的寿命远远超过另一个,而在中央部分中,该值差不多为6.7亩。 两种太阳能电池的效率最初为17.55%,但4小时后分别在17.05%和15.55%之后。 氧去除后的太阳能电池显示出更好的降解性能。

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