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A Facile and Low-Cost Method to Produce Ultrapure 99.99999 Gallium

机译:一种生产超纯99.99999%镓的简便且低成本的方法

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摘要

As one of the critical raw materials, very pure gallium is important for the semiconductor and photoelectric industry. Unfortunately, refining gallium to obtain a purity that exceeds 99.99999% is very difficult. In this paper, a new, facile and efficient continuous partial recrystallization method to prepare gallium of high purity is investigated. Impurity concentrations, segregation coefficients, and the purification effect were measured. The results indicated that the contaminating elements accumulated in the liquid phase along the crystal direction. The order of the removal ratio was Cu > Mg > Pb > Cr > Zn > Fe. This corresponded to the order of the experimentally obtained segregation coefficients for each impurity: Cu < Mg < Pb < Cr < Zn < Fe. The segregation coefficient of the impurities depended strongly on the crystallization rate. All observed impurity concentrations were substantially reduced, and the purity of the gallium obtained after our refinement exceeded 99.99999%.
机译:作为重要的原材料之一,非常纯的镓对于半导体和光电行业至关重要。不幸的是,精炼镓以获得超过99.99999%的纯度非常困难。本文研究了一种新的,简便有效的连续部分重结晶方法,以制备高纯度镓。测量杂质浓度,偏析系数和纯化效果。结果表明,污染物沿结晶方向在液相中积累。去除率的顺序为Cu> Mg> Pb> Cr> Zn> Fe。这对应于每种杂质实验获得的偏析系数的顺序:Cu

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